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* Fermi National AcceleratorUboratory FERMILAB-81/37 2000.000 May 1981 MAGNETIC MONOPOLE BIBLIOGRAPHY 1977 - 1980 R.E. Craven and W.P. Trower Physics Department Virginia Polytechnic Institute and State University Blacksburg, Virginia 24061 R.A. Carrigan, Jr. Fermi National Accelerator Laboratory Batavia, Illinois 60510 In coormemcration of the Golden Anniversary of "Quantized Singularities in the Electromagnetic Field" P.A.M. Dirac (Proc. Roy. Sot. (London) A33:60 1931). e Operated by Universities Research Association Inc. under contract with the Energy Research and Development Administration

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Page 1: * Fermi National AcceleratorUboratorylss.fnal.gov/archive/1981/pub/Pub-81-037.pdf · * Fermi National AcceleratorUboratory FERMILAB-81/37 2000.000 May 1981 MAGNETIC MONOPOLE BIBLIOGRAPHY

* Fermi National AcceleratorUboratory

FERMILAB-81/37 2000.000 May 1981

MAGNETIC MONOPOLE BIBLIOGRAPHY 1977 - 1980

R.E. Craven and W.P. Trower Physics Department

Virginia Polytechnic Institute and State University Blacksburg, Virginia 24061

R.A. Carrigan, Jr. Fermi National Accelerator Laboratory

Batavia, Illinois 60510

In coormemcration of the Golden Anniversary of

"Quantized Singularities in the Electromagnetic Field"

P.A.M. Dirac (Proc. Roy. Sot. (London) A33:60 1931).

e Operated by Universities Research Association Inc. under contract with the Energy Research and Development Administration

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-

,” sli s 2 5? 8 ;: 2 .,” 3 2 0 .: 5. .z k a

2 2 2 s

Page 3: * Fermi National AcceleratorUboratorylss.fnal.gov/archive/1981/pub/Pub-81-037.pdf · * Fermi National AcceleratorUboratory FERMILAB-81/37 2000.000 May 1981 MAGNETIC MONOPOLE BIBLIOGRAPHY

MAGNETIC MONOPOLE BIBLIOGRAPHY 1977 - 1980

R.E. Craven and W.P.Trower Physics Department

Virginia Polytechnic Institute and State University Blacksburg, Virginia 24061

R.A. Carrigan, Jr. Fermi National Accelerator Laboratory

Batavia, Illinois 60510

The last four years have seen continuing and growing interest in the

magnetic monopole conjecture despite the experimental fact that not a

single monopole has been detected in the time since the Petrus

Perigrinus report in 1269. The Price, Shirk, Osborne and Pinsky cosmic

ray event of 1975 has now been ruled out as a monopole.

None-the-less, there has been substantial theoretical activity, much

of which has grown out of gauge theory ideas that 't Hooft and Polyakov

advanced in 1974. In this context Bogomol'ny has shown from group

theory that the monopole mass must be at least four times larger than

the associated vector boson mass divided by the relevant coupling

constant (e.g. for nominal W mass and the electromagnetic coupling

constant the monopole mass is Z 10 TeV in the Georgi-Glashow SO(3)

model). These theories have been reviewed recently by D.I. Olive and

collaborators.

The present enormous interest in grand unified gauge theories has

nurtured an appreciation that a monopole could, or even more strongly,

must be associated with the super heavy X0 boson that sets the upper

bound of the grand unification desert at IO" GeV. The corresponding

monopole mass would be S 1Ol6 GeV or S 20 nanograms.

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It would appear that such masses could only have been produced in

the very early universe. A small but extremely interesting industry has

developed around the relationship of cosmology and grand unification

magnetic monopoles (GVMMS). Preskill in a pivotal paper in 1979 notes

that a paradoxical situation is raised by the requirements of cosmology,

grand unification, and the existing bounds on magnetic monopole

abundances. In essence standard cosmology predicts roughly one GUMM per

proton. Limits including the rate of expansion of the universe,

indicate that the abundance must be at least lo-" less than this. A

number of ways to lower the ratio have been suggested, including first

order phase transitions (Guth and Tye), electric charge non-conservation

(Langacker and Pi), unusual group structures (Lazarides and Shafi), and

cosmological statistical non-equilibrium (Fry and Schramm).

One of the first, if not the first, monopole related paper to

estimate the monopole flux based on a consistent physical picture is by

Lazarides, Shafi, and Walsh. Their calculated cosmical GUMM flux, S

10-s to lo-6 monopoles/m2/year, is consistent with theories which reduce

the monopole to baryon ratio and with monopole bounds set by cosmical

constraints such as the universe expansion rate and the known galactic

magnetic fields. The elegant book, Cosmical Fields by Parker, also

discusses monopole flux limits.

A GUMM moving through a detector on the earth would have a unique

signature: a low velocity, B S lo-', but extremely large kinetic energy,

S 1Ol2 GeV, and so could probably pass through the earth even if it were

heavily ionizing.

Page 5: * Fermi National AcceleratorUboratorylss.fnal.gov/archive/1981/pub/Pub-81-037.pdf · * Fermi National AcceleratorUboratory FERMILAB-81/37 2000.000 May 1981 MAGNETIC MONOPOLE BIBLIOGRAPHY

A number of possibilities are now under investigation for probing

the upper GUMM flux limit. Notes on efforts by Ullman et al. and long0

have already appeared. More conventional searches for monopoles are

also now underway at the SPSC and PEP.

This bibliography has had two immediate progenators. The first by

D.M. Stevens, published by Virginia Tech in 1970 and updated in 1973,

covered the period 1931-1973 and had 160 entries. The second, by R.A.

Carrigan, Jr. and issued by Fermilab, covered the period 1973-76 and

included about 270 entries. Each of these bibliographies had brief

summaries of the content of the articles. As the present bibliography,

from 197i’-1980, includes 651 entries it has been impossible to read, let

alone abstract, even a fraction of the material. We have, however,

attempted to assign each title to one of the categories listed below:

A Theory - General B Theory - Charge Quantization C Theory - Invariance D Theory - Electrodynamics E Theory - Relativity F Theory - Gravity G Theory - Gauge H Theory - Strings, Dual Models I Theory - Production J Theory - Scattering K Experiment - Detection L Experiment - Searches M Experiment - Critiques N Experiment - Detection Schemes P Experiment - Large Scale Effects Q Experiment - Gamma Ray Events R Monopole Reviews S General Reviews - Hypothetical Particles T Related Topics U Theory - Grand Unification X Models - (e.g. Constituents, Preons, etc.) 2 Cosmology - Mainly Theory

Page 6: * Fermi National AcceleratorUboratorylss.fnal.gov/archive/1981/pub/Pub-81-037.pdf · * Fermi National AcceleratorUboratory FERMILAB-81/37 2000.000 May 1981 MAGNETIC MONOPOLE BIBLIOGRAPHY

Earlier entries which have either been modified or which appear in

the open literature are included and noted by a trailing *. In the next

section each article is ordered roughly alphabetically by first author

and assigned a serial number which is supplemented by the category codes

above. In the last section each article is cross referenced by author.

Work at Virginia Tech was performed under the auspices of the

National Science Foundation. Essential support for the preparation of

this report was obtained from the Virginia Academy of Science. Three

compilations used for cross checking our biblography were generously

provided by Paolo Palazzi, DD Division-CERN. Much of the onerous

technical burden of preparing this bibliography was lightened by the

marvelous computer facility of Al Brenner and his colleagues at

Fermilab. Without the resources of Roger Thompson, his library and

superb staff at Fermilab, the accuracy of this document would have been

much decreased. Finally, it was Elaine Moore who educated us in the

deeper mysteries of text editing.

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BIBLIOGRAPHY

1A

2G

3N

4N

5N

6~

7G

SG*

9G

IOG

11A

12E

Interaction of Electric and Magnetic Charges Adawi I. Phys Rev 16D:1232 (1977).

Small Deformations of the Prasad-Sommerfield Solution Adler S.L. Phys Rev 19D:2997 (1979).

Trapping Energy of a Magnetic Monopole in Magnetic Materials Agarwal G.S., Jha S.S. Pramana 6:349 (1976).

Stopping-Power Formula for Magnetic Monopoles Ahlen S.P. Phys Rev 17D:229 (1978).

Theoretical and Experimental Aspects of the Energy Loss of Relativistic Heavily Ionizing Particles Ahlen S.P. Rev Mod Phys 52:121 (1980).

Limits on the Thermoacoustio Detectability of Electric and Magnetic Charges Akerlof C.W. Michigan-Preprint (1980).

Linear Deformations of the Prasad-Sommerfield Monopole Akhoury R., Jun J.H., Goldhaber A.S. Phys Rev 21D:454 (1980).

't Hooft's Non-Abelian Magnetic Flux Has Zero Classica Ambjorn J., Flyvbjerg H. Phys Lett 97B:241 (1980).

Interference, Gravity and Gauge Fields Anandan J. Nuovo Cim 53A:221 (1979).

Quantum Interference and the Classical Limit Anandan J. Pittsburgh-78-0381 (1978).

Theory of Dual-Charged Particles (Master Thesis) Anderson S.K. Naval Postgraduate School, Monterey, CA (1977).

Tachyons and Magnetic Monopoles in the De Sitter Universe Arcidiacono G. in Tachyons, Monopoles & Related Topics, E.Recami, Ed. (North-Holland, Amsterdam 1978) p.115

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-6-

13G

14T

15H

16A

17A

18G

191

20G

21G

22G

23G

2116

Classical Solutions of SO(3,l) Gauge Theory Ardalan F. Phys Rev 17D:1131 (1978).

Physical Mechanism for Quark Confinement via Pseudoparticles Argyres E.N., Lam C.S. Phys Rev 18D:2100 (1978).

Monopoles, Duality, Triality Artru X. Orsay-LPTHE-77-18 (1977).

Electromagnetism Without Monopoles is Possible in Nontrivial U(l)-Fibre Bundles Asorey M., Boya L.J. J Math Phys 20:2327 (1979).

Quantization of Superparameterized Monopoles Baaklini N.S. Nucl Phys 1428:510 (1978).

Pure Classical SU(2) Yang-Mills Theory with Potentials Invariant Under a U(1) Gauge Subgroup Bacry H., Nuyts J. Nucl Phys 151B:469 (1979).

Energetics of Monopole Production Badhwar G.D., Golden R.L., Lacy J.L., Stephens S.A. in Fourteenth International Cosmic R~-Y Conference, (Munchen, Germany 1975) p.4068

Charge-Monopole Duality in Spontaneously Broken Gauge Theories Bais F.A. Phys Rev 18D:1206 (1978).

Configurations of SO(3) Monopoles with Multiple Magnetic Charge Bais F.A. Phys Lett 64B:465 (1976).

Exact Monopole Solutions in SU(n) Gauge Theory Bais F.A., Weldon H.A. Phys Rev Lett 41:601 (1978).

Magnetic Monopoles in Non-Abelian Gauge Theory (Ph.D. Thesis) Bais F.A. UC Santa Cruz-UMI-78-04533 (1977).

Magnetic Monopole Solution in Non-Abelian Gauge Theory in Curved Spacetime Bais F.A., Russell R.J. Phys Rev 12D:3368 (1975).

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-7-

252

26G

27G

28G

29G

30G

31N

32A

33G

34H

35H

36G

On the Suppression of Monopole Production in the Very Early Universe Bais F.A., Rudaz S. Nucl Phys B170:507 (1980).

SO(3) Monopoles and Dyons with Multiple Magnetic Charge Bais F.A. Phys Lett 64B:465 (1976).

Spherically Symmetric Monopoles in Non-Abelian Gauge Theories Bais F.A., Primack J.R. Nucl Phys 123B:253 (1977).

The Topology of Monopoles Crossing a Phase Boundary Bais F.A. Utrecht-80-0840 (1980).

Zero Modes and Boundstates of the Supersymmetric Monopole Bais F.A., Troost W. Leuven-KUL-TF-79/033 (1979).

O(3) Symmetric Monopoles and Instantons Bais F.A. Leuven-KUL-TF-79/021 (1979).

Radiological Experience with the Fall 1972 Monopole Dump Baker S., Carrigan R.A., Nezrick F. Fermilab-TM-419-A (1973).

Analyticity of the Charge-Monopole Scattering Amplitude Balachandran A.P., Borchardt S., Chang S.S., Stern A., Cahalan R., Ramachandran R., Rupertsberger H. Phys Rev 17D:1150 (1978).

Lagrangian and Hamiltonian Descriptions of Yang-Mills Particles Balachandran A.P., Borchardt S., Stern A. Phys Rev 17D:3247 (1978).

Magnetic Monopoles with No Strings Balachandran A.P., Marmo G., Stern A. Nucl Phys 1628:385 (1980).

Monopole Theories with Strings and Their Applications to Meson States Balachandran A-P., Schechter J., Wali K.C., Ramachandran R., Rupertsberger H. in Group Theoretical Methods g Physics, A. Janner et al., Eds. -- (Springer-Verlag, Berlin 1976) p.24

Monopole Theory with a Massive Gauge Field and Nambu's Hamiltonian Balachandran A.P., Rupertsberger H., Schechter J. Syracuse-SU-4205-41 (1974).

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37T

38H

39u

40G

41G

42G

43G

44N

45A

46~

47x

48x

49A

Semiclassical Func tional Methods for Arbitrary Hamiltonians Balachandran A.P., Ramachandran R., Rupertsberber H. Phys Rev 15D:457 (1977).

Supersymmetric Point Particles and Monopoles with No Strings Balachandran A.P., Marmo G., Skagerstam B.S., Stern A. Nucl Phys 164B:427 (erratum 169B:547) (1980).

Existence of Magnetic Monopoles in the Unified Field Theory Balog J., Hrasko P. Phys Rev 18D:4802 (1978).

Comment on Phase Transitions in Z(N) Gauge Theories Banks T., Horn D. Phys Rev 21D:2423 (1980).

Improved Formalism for Abelian Magnetic Monopoles Banks T., Tomboulis E. Phys Rev 20D:501 (1979).

Phase Transitions in Abelian Lattice Gauge Theories Banks T., Myerson R., Kogut J. Nucl Phys 129B:493 (1977).

Spin-Dependent Forces in a Semiclassical Model of Confinement Banks T., Spiegelglas M. Nucl Phys 152B:478 (1979).

Quarks and Monopoles at LEP Barbiellini G., Bonneaud G., Cashmore R.J., Coignet G., Ellis J., Gaillard M.K., Grivaz J.F., Matteuzzi C., Peccei R.D., Wiik B.H. DESY-SO/42 (1980).

Local Field Theory for Solitons Bardakci K., Samuel S. Phys Rev 18D:2849 (1978).

Quantum-Mechanical Formulation of the Electron-Monopole Interaction Without Dirac Strings Barker W.A., Graziani F. Phys Rev 18D:3849 (1978).

Heavy Neutral Lepton Predicted by a Magnetic Quark Model Barricelli N.A. Oslo-ISBN-82-553-0385-5 Applied Math S3 (1979).

Magnetic Quark Models for the Interpretation of the Masses of Elementary Particles Barricelli N.A. Oslo-ISBN-82-553-0368-5 Applied Math 66 (1978).

Short-Range Field Problems Connected with Magnetic Monopoles Barricelli N.A. Oslo-ISBN-82-553-0367-7 Applied Math 15 (1978).

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5ou

51E

52L

53L

548'

55B

565

57D

58D

59D

60x

Cosmological Constraints on the Scale of Grand Unification Barrow J.D., Ross G.G. Oxford-Theory-76/80 (1980).

Spinor Theory of General Relativity without Elementary Gravitons Bars I., MacDowell S.W. Phys Lett 71B:lll (1977).

Search for Tachyon Monopoles in Cosmic Rays Bartlett D.F., Soo D., White M.G. Phys Rev 18D:2253 (1978).

Search for Tachyon Monopoles in Cosmic Rays Bartlett D.F., White M.G. in Proceedings of the XVII Conference on High Energy Physics (Dubna, USSR 1976) p.N24

Charge Quantization Condition with N Strings. A New Internal Quantum Number of Charge-Monopole Systems Barut A.O. Lett Math Phys 1:367 (1977).

Charge Quantization Theorem. Reply to a Paper by Usachev Barut A.O. Sov J Part Nucl lo:209 (1979).

Classical Relativistic Scattering of Two Dyons Barut A.O., Beker H. Nuovo Cim 19:309 (1974).

Covariant Field Equations for an Electromagnetic String with Mass Points at the Ends Barut A.O. J Phys llA:2073 (1978).

Electrodynamics with Strings and Monopoles Barut A.O. in Tachyons, Monopoles and Related Topics, E.Recami, Ed. (North-Holland, Amsterdam 1978) p.227

Electromagnetic Fields on Manifolds: Betti Numbers, Monopoles and D Strings, Minimal Coupling Barut A.O. in Differential Geometrical Methods & Mathematical Physics, K. Bleuler et al. Eds. (Springer-Verlag, Berlin 1978) p.179

The New Mathematical and Physical Problems of Superstrong Coupling of Magnetic Monopoles and Composite Hadrons Barut A.O. in Studies g Mathematical Physics, A.O. Barut Ed. (D. Reidel, Dordrecht 1973) p. 315

Spin-Statistics Connection for Dyonium Barut A.O. Phys Rev lOD:2709 (1974).

61~

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-lO-

62~

63~

64~

65~

665

675

68A

695

70x

71x

72G

73G

Structure of Space-Time in the Small Electromagnetic Fields Over Manifolds with Betti Numbers Barut A.O. in Quantum Theory and the Structure of Time and Space (Verlag, Munchen 1977) p.214

Extended Singularities of the Electromagnetic Fields as a Model of Elementary Particles Barut A.O. in Quantum Theory and the Structure of Time and Space, L. -- --- Castella et al. Eds. (Verlag, Munchen 1975) p.103

The Theorem of Charge Quantization (in Russian) Barut A.O. Fiz Chastits I Yadra IO:539 (1979).

Do Scalar Fields Make Instantons? Bassetti B., Butera P., Cicuta G., Zanon D., Riva F. Nuovo Cim Lett 20:21 (1977).

Electron-Monopole Scattering at Small Angles in the Quantum lheory of the Dirac-Schwinger Monopole (in Russian) Bazhanov V.V., Borodulin V.I., Pron'ko G.P., Solov'ev L.D. Teor Mat Fiz 40:355 (1979).

Small Angle Electron-Monopole Scattering in Quantum Theory of Dirac-Schwinger Monopole (in Russian) Bazhanov V.V., Borodulin V.I., Pron'ko G.P., Solov'ev L.D. Teor Mat Fiz 40:795 (1980).

Hadron Structure and Spatially Extended Dyons Beker H. Bogazici-FB-77-01 (1977).

Spatially Extended Dyons and Hadron Collisions Beker H. Bogazici-FE77-03 (1977).

Spatially Extended Dyons and Meson Mass Spectrum Beker H. Bogazici-FB-78-04A (1978).

Spatially Extended Monopoles and the Neutral Pion: A Semiclassical Approach Beker H. Bogazici-FE76-03 (1976).

Gauge-Fixing Dsgeneracies and Confinement in Non-Abelian Gauge Theories Bender C.M., Eguchi T., Pagels H.R. Phys Rev 17D:l086 (1978).

Confinement in Compact QED for Low Couplings Ben-Menahem S. Phys Rev 2OD:1923 (1979).

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-ll-

74F

75N

76T

77n

7an

79H

aoci*

alv

a2A

83A

a42

85s

Gravitational Monopoles with Classical Torsion Berm I.M., Dereli T., Tucker R.W. J Phys Math 13A:L359 (1980).

New Particle Searches at PEP Berley D., Bulos F., Cheng D., Cork B., Limon P., Litke A., Nauenberg U., Rosen J., Shen B., Sulak L., Trefil J., Winkelmann F. in PEP 1974 Summer Study -- Lawrence Berkeley-PEP-0174 (1976).

Non-Universality of the G/E Relation in the Relativistic Kepler Problem (in Russian) Biza Y.S., Tomil'chik L.M. Teor Mat Fiz 24:325 (1975).

One Potential Formulation of the Quantum Field Theory of Magnetic Monopoles Blagojevic M., Senjanovic P. Nucl Phys 161B:ll2 (1979).

New Approach to the Quantum Field Tneory of Electric and Magnetic Charge Blagojevic M., Nesic D., Senjanovic P., Sijacki D., Zivanovic D. Phys L&t 79B:75 (1978).

Duality Transformations and Weak Fields in the Nonsymmetric Unified Field Theory Boa1 D-H., Noakes D.R. Alberta-76-0817 (1976).

Stability of Classical Solutions Bogomolny E.B. Sov J Nuol Phys 24:449 (1976).

On the Gauge Field of Magnetic Monopoles Bollini C.G., Giambiagi J.J. Nucl Phys 123B:311 (1977).

On the Motion of a Charged Particle in the Field of a Magnetic Monopole Bollini C-G., Ferreira P.L. Nucl Phys 137B:351 (1978).

Dyon-Dyon Interaction in Predictive Relativistic Mechanics Bona C., Fustero X., Mas L. Phys Rev laD:4770 (1978).

On the Creation of Magnetic Monopoles in Pulsars Bonnardeau M., Drukier A.K. Astrophys Space Sci 60:375 (1979).

From Quarks to Tachyons: A Review of "Fundamental" Particle Hunting Boratav M. CERN-EP-80-77 (1980).

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86T

a7G

88A

89A*

90H'

91A

92c

93c

94G

95G

96A

97G

9aA

-12-

Kerr-Schild Geometry, Spinors and Instantons Boutableb H.J., Chakrabarti A. Phys Rev 19D:457 (1979).

Homotopy and Solitons Boya L.J., Carinena J.F., Mateos J. Fortschr Phys 26:175(205) (1978).

On the Interaction of Classical Fields and Particles Brachet M.E., Tirapegui E. Nuovo Cim 47A:210 (1978).

Avoiding "Dirac's Veto" in Monopole Theory Brandt R.A., Primack J.R. Phys Rev 15D:179a (1977).

Dirac Monopole Theory With and Without Strings Brandt R.A., Primack J.R. Phys Rev 15D:1175 (1977).

Electric-Magnetic Duality as a Secondary Symmetry Brandt R.A., Young K. Nucl Phys 162B:16a (1980).

Lorentz Invariance from Classical Particle Paths in Quantum Field Theory of Electric and Magnetic Charge Brandt R-A., Neri F., Zwanziger D. Phys Rev 19D:1153 (1979).

Lorentz Invariance of the Quantum Field Theory of Electric and Magnetic Charge Brandt R.A., Neri F., Zwanziger D. Phys Rev Lett 40:147 (1978).

Magnetic Monopoles in SU(N) Gauge Theories Brandt R.A., Neri F. New York-NYU-TRl-a0 (1980).

Non-Abelian Gauge Invariant Classical Iagrangian Formalism for Point Electric and Magnetic Charge Brandt R.A., Neri F. Nucl Phys 145B:221 (1978).

Remarks on Zwanziger's Local Quantum Field Theory of Electric and Magnetic Charge Brandt R.A., Neri F. Phys Rev laD:2080 (1978).

Singular Gauge Transformations and Magnetic Monopoles Brandt R.A., Neri F. New York-NYU-TR4-80 (1980).

The Spin Statistic Connection for Dyons Brandt R.A., Primack J.R. Int J Theor Phys 17:267 (1978).

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99G

1OOG

1OlL

102A

103G

104L

105G

106T

107N

10aT

109T

1lOA

IllE

-13-

Stability Analysis for Singular Non-Abelian Magnetic Monopoles Brandt R.A., Neri F. Nucl Phys 161B:253 (1979).

Magnetic Monopoles in SU(4) Gauge Theories Brihaye Y., Nuyts J. J Math Phys la:2177 (1977).

Observational Limits on the Magnetic-Monopole Structure of Protons Brcderick J.J., Ficenec J.R., Teplitz D.C., Teplitz V.L. Phys Rev 19D:1046 (1979).

Backlund Transformations and Magnetic Monopoles Bruce D.J. Nucl Phys 142B:253 (1978).

Diamagnetic and Critical Properties of Higgs Lattice Gauge Theories Brydges D., Frohlich J., Seiler E. Nucl Phys 152B:521 (1979).

Search for New Particles and Antinuclei (in Russian) Bunyatov S.A. Sov J Part Nucl IO:259 (1979).

SU(3) Monopole with Magnetic Quantum Numbers (0,2) Burzlaff J. Kaiserslautern Preprint (1980).

Exponential Hadronic Spectrum and Quark Liberation Cabibbo N., Parisi G. Phys Lett 59B:67 (1975).

The Use of Superconducting Shields for Generating Ultra- Low Magnetic Field Regions and Several Related Topics (Ph.D. Thesis) Cabrera 8. Stanford-Low Temp Phys-Preprint (1975).

Phase Transitions in QCD as Tunneling Through Singular Barriers Callan C.G., Dashen R., Gross D. Phys Lett 77B:270 (1978).

Index Theorem on Open Spaces Callias C.J. Mass Inst Tech-MIT-CTP-694 (1977).

Spectra of Fermions in Monopole Fields: Exactly Soluble Models Callias C.J. Phys Rev 16D:306a (1977).

Tachyonic Matter Camenzind M. in Tachyons, Monopoles and Related Topics, E. Reoami, Ed. (North-Holland, Amste&Zig78) p.a9

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112c Invariant Connections and Magnetic Monopoles Cant A. St. Andrews-go-0341 (1980).

113G Classification of SU(2) Gauge Fields: Lorents-Invariant Verses Gauge-Invariant Schemes Carmeli M., Fischler M. Phys Rev 19D:3653 (1979).

114G Classification of Yang-Mills Fields Carmeli M. Nuovo Cim 52A:545 (1979).

115G Classification of Yang-Mills Fields Carmeli M. Phys Rev Lett 39:523 (1977).

116G Einstein-Maxwell Equations: Gauge Formulation and Solutions for Radiating Bodies Carmeli M. Fortschr Phys 27:261 (1979).

117F* Gauge Field Model of Combined Gravitational, Electromagnetic and Magnetic Monopole Fields Carmeli M., Kaye M. Nuovo Cim 39B:lg7 (1977).

11gF Gauge Group Theory of Combined Gravitational and Electromagnetic Interactions Carmeli M., Kaye M. Nuovo Cim Lett 17:275 (1976).

119G Monopole Solution of Yang-Mills Equations Carmeli M. Phys Lett 68B:463 (1977).

120G Null-tetrad Formulation of the Yang-Mills Field Equations Carmeli M., Charac C., Kaye M. Nuovo Cim 45B:310 (1978).

121P Down to Earth Speculations of Grand Unification Magnetic Monopoles Carrigan R.A. Fermilab-80/56-Exp (1980).

122P Grand Unification Monopoles Inside the Earth Carrigan R.A. Nature 2aa:34a (1980).

123R Magnetic Monopole Bibliography: 1973-1976 Carrigan R.A. Fermilab-77/42 (1977).

124L Search for Magnetic Monopoles at the CERN-ISR Carrigan R.A., Strauss B.P., Giacomelli G. Phys Rev 17D:1754 (1978).

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-15-

125G

126T

127G

12aG

12gu

130G

131x

132A

133H

134G

135A

136G

137x

Exact Monopole Solution and Euclidean Yang-Mills Field Cervero J.M. Harvard-HUTP-77/AOll (1977).

Introduction to Classical Solutions of Yang-Mills Field Equations Chakrabarti A. Ecole Poly-CFT-78-0957 (1978).

On Classical Solutions of SU(3) Gauge Field Equations Chakrabarti A. Ann Inst Hen Poin 23:235 (1975).

On Classical Solutions for SU(4) Gauge Fields: Interacting Monopoles Chakrabarti A., Dipoko J. Phys Rev 15D:3011 (1977).

On the Characterization in Non-Abelian Gauge Theories Chan H.M., Tsou S.T. Phys L&t 95B:395 (1980).

Monopole Charges in Unified Gauge Theories Chan H.M., Tsou S.T. CERN-TH-2891 (1980).

U(3) Monopoles as Fundamental Constituents Chan H.M., Tsou S.T. CERN-TH-2955 (1980).

Classical Jagrangian Theory with Radiative Reaction: Extension of the Rohrlich Two-Field Formalism to Include Monopoles Cheng K.S. Phys Rev lgD:549 (1978).

Monopole Theory Without Strings Cheng K.S. J Math Phys la:746 (1977).

Remarks on the Asymptotic Behavior of the 't Hooft's Magnetic Monopole Chernavskii D.S., Kerner R. J Math Phys 19:2a7 (1978).

Colored Monopoles Cho Y.M. Phys Rev L&t 44:1115 (1980).

Gauge Theory of the Nonabelian Magnetic Charges Cho Y.M. Max Planck-MPI-PAE/PTh-5/79 (1979).

Magnetic Confinement of the Quarks Cho Y.M. Max Planck-MPI-PAE/PTh-11/79 (1979).

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13aG

139G

140G*

14lG

142E

143u

144E

145E

146G

147G

14aG

149T

150T

A Restricted Gauge Theory Cho Y.M. Phys Rev 21D:lOaO (1980).

Equality of Magnetic Charge and Pontryagin Index for Yang-Mills Dyons Christ N.H., Jackiw R. Phys Lett 91B:228 (19aO).

Can One Dent a Dyon? Coleman S., Parke S., Neveu A., Sommerfield C.M. Phys Rev 15D:544 (1977).

Classical Lumps and Their Quantum Descendents Coleman S. in New Phenomena in Subnuclear Physics, N. Zichichi Ed. (Plenum, - London 1976) p.291

Magnetic Monopoles in Curved Spacetimes Comtet A. Orsay-IPNO/TH 79-64 (1979).

Supercooling in the SU(5) Phase Transitions and Magnetic Monopole Suppression Cook G.P., Mahanthappa K.T. Phys Rev D23:1321 (1981).

Tachyon Matter and Complex Physical Variables Corben H.C. Nuovo Cim 29A:415 (1975).

Thought Experiments at Superluminal Relative Velocitites Corben H.C. Int J Theor Phys 15:703 (1976).

Rotationally Invariant Solutions of the Yang-Mills-Higgs System for a General Gauge Group: Magnetic Monopoles Corder0 P. Nucl Phys 1318:525 (1977).

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Bound States with a Gauge Monopole Cox P.H., Yildiz A. Phys Rev laD:1211 (1978).

Spontaneous Compactification of Extra Space Dimensions Cremmer E., Scherk J. Nucl Phys IlaB: (1977).

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-17-

151T

152T

153T

154T

155G

156A

157A

15au

159D

160E

161G

162T

163G

Quantum Fluctuations and the Bag Model Creutz M. Phys Rev 13D:3423 (1976).

Quantum Mechanics of Extended Objects in Relativistic Field Theory Creutz M. Phys Rev 12D:3126 (1975).

Quark "Bags" and Local Field Theory Creutz M. Phys Rev lOD:1749 (1974).

Quark Bags and Local Field Theory II: Confinement of Fermi and Vector Fields Creutz M., Soh K.S. Phys Rev 12D:443 (1975).

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Massive Photons and Tachyon Monoples Dattoli G., Mattioli M., Mignani R. Nuovo Cim Lett 20:686 (1977).

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Critical Higgs Mass for the (2+1) Dimensional Georgi-Glashow Model Diets K., Filk T. Nucl Phys 164B:536 (1980).

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-la-

164R

165T

166R

167A

16gA

16gu

1702

171G

172s

173s

1742

175B

176M

Magnetic Monopoles Dirac P.A.M. in Directions 3 Physics (Wiley, New York 1978) p.39

The Dynamics of Streams of Matter Dirac P.A.M. in Deeper Pathways & High-Energy Physics, A. Perlumutter and L.F. Scott Eds. (Plenum, New York 1977) p.1

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Proton Antiproton Collisions at the CERN SPS Dowel1 J.D. in Quarks, Gluons, and Jets, Vol I, J. Tran Thanh Van Ed. (Dreux, Orsay 1979) p.655

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Einstein-Yang-Mills Pseudoparticles and Electric Charge Quantization Duff M.J., Madore J. Phys Rev IaD: (1978).

A New Interpretation of an Event Attributed to a Magnetic Monopole Durgaprasad N., Rao M.V.S. Pramana lo:131 (1978).

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177L

17aL

179z

1aOG

1812

la2G

la3z

la4T

la5u

186T

187x

1aaA

189H

Evidence Against Production of Magnetic Monopoles at Fermilab Eberhard P.H., Ross R.R., Taylor J.D., Alvarez L.W., Oberlack H. Lawrence Berkeley-LBL-3680 (1975).

-1g-

Search for Magnetic Monopoles in Lunar Material Eberhard P.H., Ross R.R., Alvarez L.W., Watt R.D. Phys Rev 4D:3260 (1981).

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Topological Excitations in the Abelian Higgs Model Einhorn M.B., Savit R. Phys Rev 17D:2583 (1978).

Are Grand Unified Theories Compatible with Standard Cosmology? Einhorn M.B., Stein D.L., Toussaint D. Phys Rev 21D:3295 (1980).

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Electric-Magnetic Duality and Quark Confinement Ezawa Z.F. Max Planck-MPI-PAE/PTh-14/79 (1979).

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-2o-

190T

19lT

192G

193G"

194G

195G

1961

197N

198A

199D

200A

201T

Electric Quark Confinement in 2+1 Dimensions Ezawa Z.F. Phys Lett a5B:a7 (1979).

Electric Quark Confinement in 3+1 Dimensions Ezawa Z.F. Phys L&t 86B:313 (1979).

Quantum Soliton Operators for Monopoles and a Fermion-Boson Puzzle Ezawa Z.F. Phys Lett 81B:325 (1979).

A Theory of Dirac Monopoles with a Non-Abelian Symmetry Ezawa Z.F., Tze H.C. Phys Rev 15D:1647 (1977).

In Search of Many-dimensional Solitons Faddeev L.D. in Nonlocal, Nonlinear and Nonrenormalisable Field Theories, - (Dubna, USSR 1976) p.207

Quantisation of Solitons Faddeev L.D. in Proceedings of the XVII Conference on High Energy Physics --- (Dubna, USSR 1976) p.T50

Comment on the Production of High-Mass Low-Velocity Magnetic Monopoles in the Atmosphere Falik D., Opher R. Phys Rev 17D:923 (1978).

Possible Existence of Fractional Charges and Magnetic Monopoles in Matter Falik D., Opher R. Phys Rev laD:2694 11978).

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Formulations of Electrodynamics with Magnetic Monopoles Ferrari E. in Tachyons, Monopoles and Related Topics, E. Recami Ed. (North-Holland, Amsterd~l978) p.203

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Holistic Methods Finkelstein D. Int J Theor Phys 17:293 (1978).

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202G

203G

204G

205G

206N

207R

20gA

209c*

210E

2llG

212G

213B

214A

-21-

Generating the Bogomolny-Prasad-Sommerfield One-Monopole Solution by a Backlund Transformation Forgacs P., Horvath Z., Palla L. Phys Rev Lett 45:505 (1980).

Exact Multimonopole Solutions in the Bogomolny-Prasad-Sommerfield Limit Forgacs P., Horvath Z., Palla L. Budapest-KEKI-1980-122 (1980).

Order and Disorder in Gauge Systems and Magnets Fradkin E., Susskind L. Phys Rev 17D:2637 (1978).

Relationship Between Gauge Field Theories and Dual Resonance Models Frampton P.H. in New Phenomena & Subnuclear Physics, N. Zichichi Fd. (Plenum, New%rk 1977) p.49

Transitional Radiation for Magnetic Charge (in Russian) Frank I.M. SOV J NuCi PhyS 29:lgO (1979).

Scalar and Pseudoscalar Charges Frankel S. Am J Phys 44:683 (1976).

Comment on Cawley's Counterexample to a Conjecture of Dirac Frenkel A. Phys Rev 21D:2986 (1980).

Invariance Properties of the Dirac Monopole Frenkel A., Hrasko P. Annals Phys 105:2aa (1977).

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Magnetically Extended Gauge Theories Freund P.G.O. Phys Lett 76B:73 (1978).

Monopoles, Topology, Symmetry Freund P.G.O. Int J Theor Phys 17:301 (1978).

Angular Momentum and Dirac Charge Quantization in Curved Spacetime Friedman J.L., Mayer S., Parker L. Phys Rev 17D:1957 (1978).

Dyon Spin and Statistics: A Fiber-Bundle Theory of Interacting Magnetic and Electric Charges Friedman J.L., Sorkin R.D. J Math Phy 73:161 (1980).

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-22-

215A

2162

217X

2lgD

219T

220E

221R

222F

223

224A

2258

226G

A Spin-statistics Theorem for Composites Containing Both Electric and Magnetic Charges Friedman J.L., Sorkin R.D. Phys Rev 2OD:2511 (1979).

Unification, Monopoles and Cosmology Fry J.N., Schramm D.N. Phys Rev L&t 44:1361 (1980).

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A Semiclassical Monopole Configuration for Electromagnetism Fryberger D. SLAC-2474 (1980).

Pseudobaryons Fukgita M., Konishi K., Hansson T.H. Phys Lett 74B:261 (1978).

Predictive Relativistic Mechanics of Magnetic Monopoles and Electric Charges Fustero X., Mas L., Lapiedra R. Phys Rev 16D:3473 (1977).

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Outline of a Classical Theory of Quantum Physics and Gravitation Gallop J.W. Int J Theor Phys 14:237 (1975).

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On the Strength of the Dirac Monopole Garwin L.J., Garwin R.L. Am J Phys 45:164 (1977).

Solitons and Instantons Gervais J.L. in Proceedings of the 1977 European Conference z Particle Physics, L. Jenik and I. Montavy Eds. (CRIRP, Budapest 1977) p.1255

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Physics at the CERN-ISR Giacomelli G., Jacob M. Phys Rep 55:l (1979).

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Dirac Particle in a Magnetic Field: Symmetries and their Breaking by Monopole Singularities Goldhaber A.S. Phys Rev 16D:la15 (1977).

227L

228s

229A

2305

231s

232H

233G

23411

235G

236G

237G

23aN

239A

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240C

241F

242T

243A

244T

245G

246G

2472

2482

24gz

250T

251T

-24-

Spin and Statistics Connection for Charge-Monopole Composites Goldhaber A.S. Phys Rev Lett 36:1122 (1977).

Gravitational Clumping and the Annihilation of Monopoles Goldman T., Kolb E.W., Toussaint D. Cal Tech-68-793 (1980).

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Complex Line Bundles and the Magnetic Field of a Monopole Greub W.H. in Differential Geometrical Methods & Mathematical Physics, K. Bleuler et al. Eds. (Springer-Verlag, Berlin 1978) p.350

Light Quark Masses and Isospin Violation Gross D.J., Treiman S.B., Wilczek F. Phys Rev 19D:21aa (1979).

On Spherically Symmetric SU(2) Gauge Fields and Monopoles (in Chinese) Gu C.H., Hu H.S. Acta Phys Sinica 26:155 (1977).

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Phase Transitions and Magnetic Monopole Production in the Very Early Universe Guth A.H., Tye S.H.H. Phys Rev Lett 44:631 (1980).

Cosmological Consequences of a First Order Phase Transition in the SU(5) Grand Unified Model Guth A.H., Weinberg E.J. Phys Rev 23:876 (1981).

Interaction of Black Holes with 't Hooft-Polyakov Monopoles Bajicek P. Bern-go-0870 (1980).

Superconducting Properties of Pion Condensates Harrington B.J., Shepard H.K. Phys Rev 16D:3437 (1977).

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-25-

252N

253G

254D

255D

257A

258G

259G

260M

261L

262G

263G

Magnetic Monopole Mobility Spectrometer Hart F.X., Massey J.S. Am J Phys 46:5a7 (1978).

Are Quarks Short Range Solitons? Hasenfratz P., Ross D.A. Phys Lett 64B:78 (1976). (erratum 74B:432 (1978). )

Classical Electrodynamics with Two Kinds of Charges Hegedues E. Seminar of Theoretical Physics (Timisoara 1978) p.94

Action-at-a-Distance Theory of Electrodynamics with Dirac's Monopoles Hirata K. Phys Lett 83B:335 (1979).

Classical Lagrangian Theory of Dirac's Monopole: Avoiding Dirac's Veto Hirata K. Phys Lett 81B:169 (1979).

Van der Waals Interaction Between Spin > Particles Hirata K., Nojima K. Prog Theor Phys 55:1189 (1976).

Nambu Mechanics of Non-Abelian Dyons Hirayama M., Tze H.C. Phys Rev 17D:546 (1978).

Realization of Nambu Mechanics: A Particle Interacting with an SU(2) Monopole Hirayama M. Phys Rev 16D:530 (1977).

Possible Suppression of Cerenkov mission in Closely- Collimated Jets. An Explanation of the 'Magnetic Monopole' Event? Hodson A.L. in Fourteenth International Cosmic w Conference, (Munchen, Germany 1975) p.4065

A New Search for Magnetic Monopoles at the CERN-ISR with Plastic Detectors Hoffmann H., Kantardjian G., Di Liberto S., Meddi F., Roman0 G., Rosa G. Nuovo Cim L&t 23:357 (1978).

Fiber Bundle Structure of Gauge Field and Reduction by the Higgs Mechanism Honda M. Prog Theor Phys 63:1429 (1980).

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26 4E

265G

266U

267U=

268G

269G’

270G

27lA

272A

2731\

274A

275G

-26-

Birkhoff's Theorem and Magnetic Monopole Solutions for a System of Generalized Einstein-Maxwell Field Equations Horndeski G.W. J Math Phys 19:668 (1978).

Extended Monopoles in Gauge Field Theories Horvath Z., Palla L. Trieste-ICTP-IC/77/35 (1977).

Grand Unified Schemes and Spontaneous Compactification Horvath Z., Palla L., Cremmer E., Scherk J. Nucl Phys 127B:57 (1977).

Monopoles and Grand Unification Theories Horvath Z., Palla L. Phys Lett 69B:197 (1977).

Monopoles, Dyons and Other Topologically Stable Solutions in Gauge Theories Horvath Z., Palla L. Acta Phys Austr 46:297 (1977).

On the Generalized Monopole Solutions in Gauge Theories Horvath Z., Palla L. Nucl Phys 116B:500 (1976).

Spontaneous Compactification and 'Monopoles' in Higher Dimensions Horvath Z., Palla L. NUCl Phys 142B:327 (1978).

Classical Action, The Wu-Yang Phase Factor and Prequantization Horvathy P.A. CNRS Marseille-SO/p.1182 (1980).

Rotational Symmetry and Dirac's Monopole Horvathy P.A. CNBS Marseille-go/p.1190 (1980).

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On the Fermion-Boson Puzzle Hosoda M., Kosakai H. Prog lheor Phys 58:2ooa (1977).

The Decomposition and Reduction of Gauge Field and Dual Charged Solution of Abelianizable Field Hou B.Y., Duan Y.S., Ge M.L. Sci Sinica 21:446 (1978).

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27611

277A

278A

2798

2aOG

2alB

28211

2a3G

284G

285A

286G

287G

On Axially-Symmetric Finite tiergy Monopole Configurations Houston P., O'Raifeartaigh L. Dublin-DIAS-SIP-SO-28 (1980).

On the Charge Distribution of Static Axial and Mirror Symmetric Monopole Systems Houston P., O'Raifeartaigh L. Phys Lett 94B:l53 (1980).

On Monopole Systems with Weak Axial Symmetry Houston P., O'Raifeartaigh L. Dublin-DIAS-SIP-go-32 (1980).

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On the Zeros of the Higgs Field for Axially Symmetric Multi-monopole Configurations Houston P., O'Raifeartaigh L. Dublin-DIAS-STP-80-14 (1980).

Quasiclassical Quantization of the Magnetic Charge Hrasko P. Am J Phys 45:838 (1977).

Rotation Symmetry in the Hamiltonian Dynamics Hrasko P., Balog J. Nuovo Cim 45:239 (1978).

On the Supersymmetric Solitons and Monopoles Hruby J. NUCl Phys 162B:449 (1980).

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2aaci

2892

290A

291G

292B

293E

294G

295A

2966

297c

29gA

2998

-2a-

Flux Quantization and Angular Momentum in Non-Abelian Gauge Field Theories Huang K., Stump D.R. Phys Rev 15D:3660 (1977).

Particle Solutions in a Unified Field Theory Huerta R., Parker B. Phys Rev 19D:2853 (1979).

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Charge Quantization in Curved Space-Time Inomata A., Trinkala M. Phys Rev IaD: 1861 (1978).

Spinor Fields in Four-Dimensional Space-Time Isham C.J. Proc R Sot (London) 364A:591 (1978).

Covariant Quantization of Soliton in Gauge Theories Ishikawa K. Prog Theor Phys 58:1283 (1977).

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Magnetic Charge Quantization and Generalized Imprimitivity Systems Jadczyk A.Z. Int J Theor Phys 14:183 (1976).

Vortices and Monopoles Jaffe A.,?&bes C. (Birkhauser, Boston 1980) 287pp

300A

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-2%

301A

302B'

303A

304G

305E

306T

307s

30aT

310G

311H

Concerning Axially Symmetric Monopole-type Solutions Jang P.S., Park S.Y., Wali K.C. Phys Rev 17~:1641 (1978).

Flux Quantization and Particle Physics Jehle H. in Topics in Strong Interactions, A.O. Barut and W.E. Brittin Eds. (Colorado, Colorado 1972) p.399

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Some Exact Dyon Solutions for the Classical Yang-Mills Field Equation Ju I. Phys Rev 17D:1637 (1978).

Magnetic Monopoles in a Gauge Field Theory from Vortex-Strings Kalb M. Phys Rev 17D:2713 (1978).

Statics for the Antisymmetric Tensor Potential Due to Closed Strings Kalb M. Nuovo Cim 29A:364 (1975).

312G Time-Independent Yang-Mills Statics Kalb M. Phys Rev 18D:2909 (1978).

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313A

314D

315G

316G

317G

31gA

319A

320A

321A

3225

3232

324G

325G

Direct Action and Magnetic Monopoles Kamat R.V. Nuovo Cim 43B:l41 (1978).

Electromagnetism with Magnetic Monopoles Kamat R.V. J Phys Educ 5:l (1977).

Singular Gauge Transformations and Monopole Vortex-Line Systems Kamata M. Prog Theor Phys 59:1346 (1978).

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Energy Levels of the Magnetic Monopole in the Prasad-Sommerfield Limit Kerner R. Phys Rev 19D:1243 (1979).

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3272"

32aA

3292

330A

331G

332E

334A

335A

336A

337N

3388

-3l-

The Excited States of the Prasad-Sommerfield Solution and its SU( 3) Generalization Kerner R. Phys Lett alB:21 (1979).

Topology of Cosmic Domains and Strings Kibble T.W.B. J Phys 9A:13a7 (1976).

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Stationary Electromagnetic Sources Near a Black Hole King A.R. Nuovo Cim Lett 17:102 (1976).

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Many-Body Equilibrium of Dual Charged Sources in General Relativity Kobiske R.A., Parker L. Phys Rev 16D:3355 (1977).

Solution of the Einstein-Maxwell Equations for Iwo Unequal Spinning Sources in Equilibrium (erratum) Kobiske R.A., Parker L. Phys Rev llD:1714 (1975).

D*F for the SU(2) Wu-Yang Solutions Koh I.G., Kim Y. Sogang(Korea)-Preprint (1980).

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-32-

339G

340x

341A

342A

343F

344G

345D

346D

347G

34aG

34911

350u

351u

Ansatz for Solutions with Higher Topological Charge Kovacs E. SLAC-2465 (1980).

Can Neutrinos be Bound States of Massive Supersymmetric Pairs Krolikowski W. Phys Lett 85B:335 (1979).

New Approach to the Theory of Magnetic Monopoles Kruglov S.I., Strazhev V.I. J Phys A13:L85 (1980).

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Conformal Invariance of Maxwell's Equations with Magnetic Charges Kyriakopoulos E. Int J Theor Phys 17:353 (1978).

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-33-

352G

353G

354u

3552

356U

3572

35au

359G

360G

361A

362G

363R

364A

Non-Uniqueness of the Source for Singular Gauge Fields Lanyi G., Pappas R. Phys L&t 68B:436 (1977).

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-34-

365C

366E

367G

369G

3702

371R

372A

37w

374F

375G

376G

377F

Statistics of Charge-Monopole System Leinaas J.M. Nuovo Cim 47A:l9 (1978).

Motions of Electric Charges from Sub- and Super-luminal Sources in an Electromagnetic Field Lemke H. Nuovo Cim Lett 12:619 (1975).

Exact Monopole Solutions in Gauge Theories for an Arbitrary Semisimple Compact Group Leznov A.N., Saveliev M.V. Lett Math Phys 3:207 (1979).

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Confinement of Monopoles at High Temperatures Linde A.D. Lebedev-SO-125 (1980).

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The Strict Equivalence of the Abelian Monopole and its Non-Abelian Stringless Counterpart by Use of Sections Lugo V.A. Phys Lett 66B:459 (1977).

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37 SA

379G

3804

3glA

382A

383

384A

385G

386G

387F

388A

38%

390A

Angular Momentum and Magnetic Charge Madore J. Phys Rev 17D:562 (1978).

On Axially Symmetric Solutions to the Higgs-Kibble-Yang-Mills Field Equations Madore J. Gen Rel Grav a:655 (1977).

Continous Injection Model for Hard x-ray Correlated Microwave Bursts Maetzler C. Solar Phys 49:117 (1976).

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Common Feature of Nonlinear Solvable Models Mainland G.B., Takasugi E., Tanaka K. Phys Rev 15D:3007 (1977).

Some Geometrical Aspects of Monopole Theories Maison D., Grfanidis S.J. Phys Rev 15D:3608 (1977).

Uniqueness of the Prasad-Sommerfield Monopole Solution Liaison D. Max Planck-MPI-PAE/PTh-ll/gO (1980).

Charge-Monopole Duality and the Phases of Non-Abelian Gauge Theories Mandelstam S. Phys Rev 19D:2391 (1979).

Gravitational Self-Interaction of the Electromagnetic Monopole and Dipole Field Mankin R., Piir I. Tartu-FAI-27 (1973).

Complex Structure of Monopoles Manton N.S. NUCl Phys 1358:319 (1978).

The Force Between 't Hooft-Polyakov Monopoles Manton N.S. Nucl Phys 126B:525 (1977).

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-36-

39 1G

392G

393G

39’+G

395G

396G

397G

3981;

399G

4OOG

4OlA

402F

403F

Magnetic Monopoles and Non-Abelian Gauge Theories Marciano W.J. Int J Theor Phys 17:275 (1978).

Multiply Charged Magnetic Monopoles, SU(3) Pseudoparticles and Gravitational Pseudoparticles Marciano W.J., Pagels H., Parsa Z. Phys Rev 15D:1044 (1977).

Introduction to the Fiber-Bundle Approach to Gauge Theories Mayer M.E. Irvine-Preprint (1976).

An Extended Vector Theory Mckeon G. Nucl Phys 147B:299 (1979).

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Self-Coupled Vector Fields Mckeon G. Can J Phys 56:1195 (1978).

Gauge Independent Formulation of Magnetic Monopoles Mckeon G. Phys Rev 17D:557 (1978).

Path-Integral Quantization of an Extended Yang-Mills System Mckeon G. Can J Phys 56:656 (1978).

A Time-Dependent Property of the Prasad-Sommerfield Monopole Mecklenburg W., O'Brien D.P. Phys Rev 18D: 1327 (1978).

Radially Separated Monopole Solutions in Non-Abelian Gauge Models Michel L., O'Raifeartaigh L., Wali K.C. Phys Rev 15D: 3641 11977).

Group Theoretical Approach to Monopole Theories Micu M. Rev Roum Phys 22:427 (1977).

Continuity Equations for Transverse Multipole Amplitudes for Both the Electromagnetic and the Asymptotic Gravitational Field Miglietta F. Nuovo Cim 50A:466 (1979).

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-37-

404A

405E

406~

407F

408F

409E

4lOE

411F

412H

413A

414G

415L

416~

A Path-Dependent Approach to Colored Magnetic Monopoles Mignani R. Int J Theor Phys 16:425 (1977).

Duration Length Symmetry in Complex Three-Space and Interpreting Superluminal lorentz Transformations Mignani R., Recami E. Nuovo Cim Lett 16:449 (1976).

Gravitational Analogues of Magnetic Monopoles from the Path-Dependent Formalism Mignani R. Nuovo Cim Lett 22:597 (1978).

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Strong Black Holes and Quark-Monopole Identification Mignani R. Nuovo Cim Lett 16:6 (1976).

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Dirac's Monopole and the Hopf Map Minami M. Prog Theor Phys 62:1128 (1979).

Quaterionic Gauge Fields on S' and Yang's SU(2) Monopole Minami M. Prog Theor Phys 63:303 (1980).

Genesis and the Physico-Chemical Aspect of the Search of the Relic Magnetic Monopoles (in Russian) Mikhailov V.F. Alma Ata-IFVE-74-79 (1979).

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-3a-

417G

41aA

419A

420G

421N

422N

423G

4248

425G

426~

427L

4280

Magnetic Monopoles as Gauge Particles? Montonen C., Olive D. Phys Lett 72B:117 (1977).

Interaction of Leptons and Magnetic Monopoles Moshir M. Princeton-76-07,458 (1977).

Normalizable Solutions to the Dirac Equation in the Presence of a Magnetic Monopole Mottola E. Phys Rev 19D: 3170 (1979).

Zero Modes of the 't Hooft-Polyakov Monopole Mottola E. Phys Lett 79B:242 (1978). (erratum BOB:433 (1979). )

Proposal to the SPSC Search for Magnetic Monopoles Musset P., Aubert B., Price M., Vialle J.P. CERN-SPSC/78-15 (1978).

Search for Magnetic Monopoles at the cp Colliding Ring Musset P., Price M., Vialle J.P., Aubert B. CERN - July (1977).

On Abelian Self-Dual Multimonopoles Nahm W. Phys Lett 93B:42 (1980).

Interacting Monopoles Nahm W. Phys L&t 858:373 (1979).

The Interaction Energy of 't Hooft Monopoles in the Prasad-Sommerfield Limit Nahm W. Phys Lett 79B:426 (1978).

A Simple Formalism for the BPS Monopole Nahm W. Phys Lett 90B:413 (1980).

Interaction Characteristics of Cosmic Ray Hadrons (in Russian) Nam R.A., Nesterova N.M., Nikolskii S.I., Pavlyuchenko V.P., Romakhin V.A., Chubenko A.P., Yakolev V.I. Izv Akad Nauk USSR 40:940 (1976).

Quantum Theory of the Dirac Field in the Presence of the Static Topological Monopole Nakagawa N. Tokyo-UT-329 (1979).

Monopoles, Strings and Instantons Nambu Y. Chicago-EFI-77/17 (1977).

429H

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-39-

430G

431H

432G

433U

434G

435L

436~

437H

43aG

439E

440G

441G'

442A

Some Topological Configurations in Gauge lheories Nambu Y. Int J Theor Phys 17:287 (1978).

Stringlike Configurations in the Weinberg-Salam lheory Nambu Y. Nucl Phys 1308:505 (1977).

Topological Problems in Gauge Theories Nambu Y. Physica 96A:g9 (1979).

Cosmological Implications of Grand Unified Theories Nanopoulos D.V. CERN-'lh-2871 (1980).

Path Integral Quantization of Dirac String Lagrangian in A0 = 0 Gauge Narain K.S. Phys Rev 20D:2555 (1979).

Elementary Particles and High mergy Phenomena. Progress Report Nauenberg U., Bartlett D.F. Colorado-COO-2144 (1977).

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On Dirac Strings Ni W.T., Yen H.C. Chin J Phys 14:l (1976).

A Quantum Liquid Model for the QCD Vacuum: Gauge and Rotational Invariance of Domained and Quantized Homogeneous Color Fields Nielsen H.B., Olesen P. Nucl Phys 160B:380 (1979).

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Gauge and Representation Independent Proof of the Guth-Weinberg Theorem O'Raifeartaigh L. Nuovo Cim Lett la:205 (1977).

Mass Spectrum for Monopoles of Integral Isospin: Bag Model as the High Isospin Limit O'Raifeartaigh L., Rawnsley J. Phys L&t 72B:465 (1978).

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443A

444G

445G

446~

447R

44gR

449E

450A

451A

452T

453G

454A

-4o-

Magnetic-Monopole Interactions O'Raifeartaigh L., Park S.Y., Wali K.C. Phys Rev 20:1941 (1979).

Dyons in the Weinberg-Salam Unified Gauge Theory Oh C.H. Prog Theor Phys 59:678 (1978).

A Note on Classical Solution for the 't Hooft Monopole and the Julia-Zee Dyon Oh C.H. Phys Rev IaD: (1978).

Quantum Theory of Path-Dependent Field Operator Based on Characteristics of Displacement Operators Okabayashi T. Fortsch Physik 24:619 (1976).

Magnetic Monopoles Olive D. Phys Rep 49:165 (1979).

Lectures on Magnetic Monopoles Olive D. Phys Rep 49:113 (1979).

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Magnetic Monopoles and Other Topological Objects in Quantum Field Theory Olive D. Trieste-ICTP/go/gl-2 (1978).

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An Identity for T-Ordered Exponentials with Applications to Quantum Mechanics Onofri E. Annals Phys 102:371 (1976).

Topological Charges for N.4 Supersymmetric Gauge Theories and Monopoles of Spin-l Osborn H. Phys Lett a38:321 (1979).

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-41-

455A

456A

457A

458A

4598

460G

46 1A

462P

463~

464G

465X

466~"

The Dyon Green's Functions Based on the Analytic Representations of the Poincare Algebras III (revised) Ozaki S. Preprint-75-0845 (1975).

The Structure of Hadrons Based on Colored Dyons as Protoparticles I (revised) ozaki s. Preprint-76-0717 (1976).

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Topological Solutions in Physics Parsa Z. Am J Phys 47:56 (1979).

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468~ Search for Magnetic Monopoles Pavlovic P. Cesk Gas Fys 27:172 (1977).

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470R' New Pathways in High Energy Physics: L Magnetic Charge and Other Fundamental Approaches, A. Perlmutter Ed. (Plenum, New York 1976) 4Olpp

471c Mandelstamt-'t Hooft Duality in Abelian Lattice Models Peskin M.E. Annals Phys 113:122 (1978).

472A Theory of Magnetic Charge (in Russian) Pestov A.B. Dubna-JINR-P2-11630 (1978).

473u Suppression of Supperheavy Magnetic Monopoles in Grand Unified Theories Pi S-Y. SLAC-2584 (1980).

474R Discovery Claims, Ad Hominem Arguments and Research Programmes: Case Studies in Elementary Particle Physics Pickering A. Edinburgh-SSU-Preprint (1978).

475Fi The Hunting of the Quark. The Experimental Method in Science Pickering A. Edinburgh-SSU-Preprint (1979).

476~ A Method for Unique Identification of Relativistic (>0.5) Magnetic Monopoles with a Fast Film Cherenkov Detector Pinsky L.S., Hagstrom R. in Fourteenth International Cosmic w Conference, (Munchen, Germany 1975) p.4045

477T Classical and Quantum Theoretical Aspects of Solitons (in German) Pohlmeyer K. DESY-T-76/05-mc (1976).

478~ Functional Integrals in Quantum Field Theory Popov V.N. CERN-TH-2424 (1977).

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-43-

479G

480~

481~

4821;

483~

484~

485G

486~

4872

488~

48%

49OT

491H

Construction of Exact Multimonopole Solutions Prasad M.K., Rossi P. Mass Inst Tech-MIT-Preprint (1980).

Construction of Exact Yang-Mills-Biggs Multimonopoles of Arbitrary Charge Prasad M.K., Rossi P. Mass Inst Tech-MIT-CTP-904 (1980).

Exact Yang-Mills-Higgs Monopole Solutions of Arbitrary Topological Charge Prasad M.K. Mass Inst Tech-Preprint (1980).

Instantons and Monopoles in Yang-Mills Gauge Field Theories Prasad M.K. Stony Brook-SUNY-ITP-SB-79-99 (1979).

Mirror Symmetry and Exact Multimonopole Solutions Prasad M.K., Rossi P. Mass Inst Tech-MIT-CTP-896 (1980).

Rigorous Construction of Exact Multimonopole Solutions Prasad M.K., Rossi P. Mass Inst Tech-MIT-CTP-903 (1980).

A Systematic Framework for Generating Multimonopole Solutions Prasad M.K., Sinha A., Chau Wang L.L. Stony Brook-SUNY-ITP-SE80-73 (1980).

Static Fluid Spheres in Einstein-Cartan Theory Prasanna A.R. Phys Rev llD:2076 (1975).

Cosmological Production of Superheavy Magnetic Monopoles Preskill J.P. Phys Rev Lett 43:1365 (1979).

Addenda to the Paper on the Magnetic Monopole Price P.B., Shirk E.D., Osborne W.Z., Pinsky L.S. in Fourteenth International Cosmic 9 Conference, (Munchen, Germany 1975) p.4041

Further Measurements and Reassessment of the Magnetic Monopole Candidate Price P.B., Shirk E.K., Osborne W.Z., Pinsky L.S. Phys Rev 18D:1382 (1978).

Fermions in Field of the 't Hooft-Polyakov Monopole (in Russian) Prokhvatilov E.V., Franke V.A. Yaden Fiz 24:856 (1976).

On Solutions of the 'Finite Strings' Type in Classical Gauge Field Theories (in Russian) Prokhvatilov E.V., Franke V.A. Vestn Leningr U - Fiz IO:139 (1977).

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-44-

492G

‘193T

494T

495c

496F

497R

498A

499P

500G

501A

502G

503T

504E

Exact Classical Solutions of Yang-Mills Sourceless Equations Protogenov A.P. Phys Lett 67~:62 (1977).

Introduction to Gauge Tneories of the Strong, Weak, and Electromagnetic Interactions Quigg C. Fermilab-Conf-80/64-THY (1978).

Field Theory of Extended Objects Rajasekaran G. Preprint (1976).

Symmetries of Generalized Electromagnetic Fields Rajput B.S., Prakash 0. Ind J Pure Appl Phys lb:593 (1978).

Dual Charged Solution in Curved Space-time Ramachandran R., Raval V.M. Pramana 9:507 (1977).

Magnetic Monopole and Close Relatives Ramachandran R. Phys News 8:66 (1977).

Magnetic Monopole Solutions Ramachandran R. Proceedings of the III High Energy Physics Symposium, Bhubaneswar, India, Vol 2, 1977, 209-234

On the Possibility of Registration of Dirac Monopole by Nonlinear Effects in the kission of Interstellar Masers Rautian S.G., Safonov V.P., Smirnov G.I. Phys Lett 70B:278 (1977).

Comment on the Magnetic Charge of Yang-Mills Fields with Large Internal Symmetry Group Rawnsley J.H., Tchrakian D.H. J Phys lOA:L87 (1977).

Spherically Symmetric Monopoles are Smooth Rawnsley J.H. J Phys lOA:L139 (1977).

Multimonopole Solutions in the Prasad-Sommerfield Limit Rebbi C., Rossi P. Phys Rev 22D:2010 (1980).

Solitons Rebbi C. Sci Amer 240:92 (1979).

About Tachyons and Magnetic Monopoles in Quantum Field Theory and Classical Physics Recami E., Mignani R., Ziino G. in Recent Developments k Relativistic Quantum Field Theory and its Applications Vol. II, W. Karwowski Ed. (Wroclaw, Poland 1976) p.267

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-45-

505E

506E

507A

508E

509G

5lOG

5llG

512G

513G

514A

515A

516A

517A

Connection Between Magnetic Monopoles and Faster-Than-Light Speeds Recani E., Mignani R. Trieste-ICTP-K/75/83 (1975).

A New Introductory View About Superluminal Frames and Tachyons Recami E. Catania-INFN-AE-78/2 (1978).

A New Approach and Experimental Outlook on Magnetic Monopoles Recami E., Mignani R. in The Uncertainty Principle and Foundations of Quantum Physics, - W.C. Price and S.S. Chissick Eds. (Wiley, London 1977) p.321

Tachyons, Monopoles and Related Topics, E. Reoami Ed. (North-Holland, Amsterdam 1978) 285pp

On Spherically Symmetric Fields in Gauge Theories Romanov V.N., Schwarz A.S., Tyupkin Y.S. Nucl Phys 130B:209 (1977).

Spherically Symmetric Solutions (in Russian) Romanov V.N., Frolov I.V., Schwarz A.S. Teor Mat Fiz 37:305 (1978).

A Consistency Check of Montonen-Olive's Conjecture Rossi P. Mass Inst Tech-MIT-CTP-756 (1979).

Fermion Zero Modes and 'Hidden' Symmetry Rossi P. Phys Lett 71B:145 (1977).

N=4 Supersymmetric Monopoles and the Vanishing of the 8 Function Rossi P. Mass Inst Tech-MIT-CTP-882 (1980).

Propogation Functions in the Field of a Monopole Rossi P. Nucl Phys 149B:170 (1979).

Spin > Particles in the Field of Monopoles Rossi P. Nucl Phys 127B:518 (1977).

Propagator in a Theory with Confinement Roth R. Nucl Phys 154B:21 (1979).

Comment on the Motion of a Spin > Particle in the Field of a Magnetic Monopole Ruck H.M., Biedenharn L.C. Phys Rev 20D:2089 (1979).

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-46-

518D

519A

520A

521A

522G

523T

524T

5258

526A

527A

528A

Clebsch Potentials in the Theory of Electromagnetic Fields Admitting Electric and Magnetic Charge Distributions Fiund H. J Mathematical Phys 18:84 (1977).

Connection Between the Spin Magnetic Moment of Electron and the Dirac's Monopole (in Russian) Ruzicka J. Dubna-JINR-P2-11338 (1978).

Dirac Monopoles, Instantons and Hopf Maps Ryder L.H. Kent-78-1169 (1978).

Dirac Monopoles and the Hopf Map S3 + S* Ryder L.H. J Phys 13A:437 (1980).

Topological Symmetry Breakdown and Quark Confinement Stuart S. Nucl Phys 154B:62 (1979).

Statistical Mechanics and Field Theory Samuel S.A. Lawrence Berkeley-LBL-9168 (1979).

Cherenkov Losses of a Relativistic Neutron in a Conducting Medium Sastry G.P., Parida B.K. 2 Naturforsch 32A:1126 (1977).

Allowed Values of the Quark Magnetic Charges in Dyon Models of Hadrons Satikov I., Strazhev V. Sov J Nucl Phys 30:716 (1979).

Anomaly of the {-{ Phase Shift and the Strong Van der Waals Interaction Sawada T. Tokyo-'IDETP-75-16 (1975).

Discrepancies in Partial-Wave Dispersion Relations and a Possible Strong Van der Waals Force Sawada T. Tsukuba-UTHEP-47 (1979).

Evidence for the Strong Van der Waals Force in the Hadron-Hadron Scattering Sawada T. Prog Theor Phys 59:149 (1978).

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529A Present Status of the Strong Van der Waals Force in the Hadron-Hadron Scattering Sawada T. Tsukuba- UlHEP-34 (1978).

530A Proposal to Confirm the Strong Van der Waals Interaction in Low Knergy p-p Scattering Sawada T. Prog Theor Phys 59:149 (1978).

531A Separation of the Strong Van der Waals Interaction from the Nuclear Forces Sawada T. Tokyo-TUETP-75-13 (1975).

532A Can Low fiergy Experiments Supply the Effective Information to Determine the Inner Structure of Hadrons? Sawada T. in Proceedings of the Tsukuba Symposium on Polarization -- Phenomena & Nuclear Reactions, K. Yagi Ed. (Tsukuba, Japan 1979) p.247

533G

534G

5350

536A

537A

5380

539T

Exact Monopole Solutions for sO(3) Gauge Fields Coupled to f-g Theory Sayed W.A. Trieste-ICTP-IC/78/40 (1978).

Monopole Solutions for Strong Gravity Coupled to sO(3) Gauge Fields Sayed W.A. Phys Rev 20D:1465 (1979).

Aspects of Unified Gauge Theories Shafi Q. CERN-TH-2932 (1980).

A Theorem on the Existence of Dyon Solutions Schechter M. Serie Naranja: Investigaciones No 227 (1980).

Collinear Topological Monopoles and Topological Lines Schiff H. J Phys 11A: 173 (1978).

A Manifestly Gauge-Invariant Hamiltonian Formulation of Classioal Electrodynamics Including Magnetic Monopoles Schlitt D.W. Physica 918:133 (1978).

Relativistic Interactions in Nuclei and the Approach to Scaling in Deep Inelastic Scattering Schmidt I.A. SLAC-203 (1977).

Dynamical Symmetry and Magnetic Charge Schonfeld J.F. Paris-LPTENS-79/25 (1979).

540A

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541A

542G

543u

54411

54511

546T

547G'

5488

549G

550T

551G

552G

5531'

Topologically Nontrivial Solutions of Classical Equations and Their Role in Quantum Field Theory (in Russian) Schwarz A.S. in Nonlocal, Nonlinear and Nonrenormalizable Field Theories - (Dubna, USSR 1976) p.224

On the Existence and Stnoothness of Spherically Symmetric Monopole Solutions in Non-Abelian Gauge Theories Scott D.M. Trier&e-ICTP/78-79/5 (1979).

The Masses of Monopoles in Grand Unified Theories Scott D.M. Nucl Phys 171B:lOq (1980).

Monopoles in a Grand Unified Theory Based on SU(5) Scott D.M. Nucl Phys 171B:95 (1980).

011 the Possibility of Magnetic Monopoles Lighter than l/a Mx in Grand Unified Theories Scott D.M. Cambridge-DAMTP-80/7 (1978).

The Electron as a Black Hole Sekine M., Musha T. Preprint (1975).

The SO(3) Monopole Catalog Shankar R. Phys Rev 14D:1107 (1976).

Magnetic Monopoles: Retrospect and Prospect Sharma S.P. J Phys Educ 4:6 (1976).

Classical Yang-Mills Theory in the Presence of External Sources Sikivie P., Weiss N. Phys Rev 18D:3809 (1978).

Approaches to High hergy Physics Singh V. Phys News 7:78 (1976).

On Gauge Theory Monopole Solutions (Ph.D. Thesis) Sinha A. Columbia-78-19,434 (1978).

Lorents Transformations for Gauge Theory Monopole Solutions Sinha A. Columbia-CU-TP-100 (1977).

Strong Spin-Two Interaction and General Relativity Sivaram C., Sinha K.P. Phys Rep 51:lll (1979).

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554R

5555

556T

557T

55811

559A

560A

561U

562G

563G

564X*

565G

566C

-4g-

Magnetic Monopoles: A Bibliography of Recent Research SLAC Library Staff SLAC-TN-75014 (1975).

Electron Scattering on Dirac-Schwinger Monopole at Small Angles (in Russian) Smolyakov N.V. Serpukov-IHEP-80/11 (1980).

Neutrino as the Source of an Axial Electromagnetic Field Slad L.M. Sov J Nucl Phys 27:745 (1978).

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The Quantum Electromagnetic Field in Multiply Connected Space Sorkin R. J Phys Math 12A:403 (1979).

On the Relation Between Charge and Topology Sorkin R. J Phys lOA: (1977).

SU(5) Monopoles on the Lattice Srednicki M., Susskind L. Stanford-ITP-666 (1980).

Monopole and Vortex Disassociation and the Decay of the False vacuum Steinhardt P.J. Harvard-HUTP-80/A088 (1980).

Resonances in SU(2) Gauge Theory Stern A. Phys Rev 15D:3672 (1977).

Condensed Monopoles and Quark Confinement Stone M., Thomas P.R. Phys Rev Lett 41:351 (1978).

Continuum Gauge Theories Stora R. Cargese Summer Inst 1976:201 24pp

Galilean Invariance and Magnetic Charge Strazhev V.I. Int J Theor Phys 13:113 (1975).

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567T

568G

569T

570A

571H

57x

573G

5746

575G

576U

577G

57s

Instantaneous Coulomb Interaction for a Long-range Background Field in Quantum Chromodynamics Stump D.R. Phys Rev 2OD:l965 (1979).

Gauge Invariant Spinor Theory Sugawara H. in Proceedings of the Nineteenth International Conference on Hpi;;,Energy Physics, S. Homma et al. Eds. (PSJ, Tokyo 1978)

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Quarks and Magnetic Monopoles Sugawara H. in Proceedings of INS Winter Meeting on Particle Physics, -- - Akama K. et al. Eds -- Tokyo-INS-PT-29 (1976). p.93

Equation of Motion for String Operators in Quantum Chromodynamics Suura H. Phys Rev 20D:1412 (1979).

Charge Screening and Mass Spectrum Swieca J.A. Phys Rev 13D:312 (1976).

Magnetic Monopoles and Non-Abelian Gauge Groups 't Hooft G. in Group Theoretical Methods & Physics, A. Janner et al. Eds. -- (Springer-Verlag, Berlin 1976) p.3

Phase Transition Towards Permanent Quark Confinement 't Hooft G. Nucl Phys 138B:l (1978).

A Property of Electric and Magnetic Flux in Non-Abelian Gauge Theories 't Hooft G. Nucl Phys 153B:l41 (1979).

Monopoles and the Symmetry Breaking Pattern of a SG(lO)-Based GUT. A Topological Argument Tataru-Mihai P. Max Planck-Preprint (1980).

On the Prasad-Sommerfield Dyon (Monopole) Solution Tataru-Mihai P. Max Planck-MPI-79-0483 (1979).

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579G

5802

581G

582G

583G

584G

585N

5868

587C

58%

58%

5901

-5l-

The Existence of Multi-monopole Solutions to the Static SU(2) Yang-Mills-Higgs Equations in the Prasad-Sommerfield Limit Taubes C.H. Harvard-HUTMP 79/B94 (1979).

Magnetic Monopoles and Cosmology Tayler R.J. Mm Not R Astr Sot 176:69P (1976).

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The Magnetic Charge of a Spherically Symmetric Class of SU(2) Monopoles Tchrakian D.H. biserslautern-D-0531 (1978).

N-Dimensional Instantons and Monopoles Tchrakian D.H. J Math Phys 21:166 (1980).

't Hooft Electromagnetic Tensor for Higgs Fields of Arbitrary Isospin Tchrakian D.H. Phys Lett 9lB:415 (1980).

Detection of Dirac Monopole with the Combination of Muon Burst Detector, Neutrino Detector and Core Detector (in Japanese) Teramoto Y. Uchusen Kenkyu 21:314 (1977).

Introductory Lectures on Fibre Bundles and Topology for Physicists Thomas G.H. Riv Nuovo Cim 3:(4) (1978).

Space-Reflection Operation and the Boson-Fermion Puzzle in a Dyonium Model Tolkachev E.A., Tomil'chik L.M. Phys Lett 8i~:i73 (1979).

Semiclassical Quantization for Gauge Theories Tomboulis E., Woo G. Mass Inst Tech-MIT-CTP-540 (1976).

't Hooft Monopoles Larger Gauge Groups Toussaint D., Wilczek F. Princeton-76-0989 (1976).

Speculations on the Production of Quarks and Monopoles Trefil J.S. Fermilab-TM-0268 (1970).

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-52-

591A

592Q

593G

594A

595A

596G

5972

5988

599G

600~

6015

Solution of a Paradox Concerning the Motion of an Electric and a Magnetic Point Charge Troost w. Leuven-KUL-TF-78/006 (1978).

Magnetic Poles and a Still UneXDlained Phenomenon Trower W.P. in Particle Physics 1980, I. Andric et al. Eds. (North-Holland, -- Amsterdam 1980) p.485

A Short Introduction to the Mathematical Formulation of Gauge Theory Tsou S.T. Zakopane Poland 1978, Eighteenth Cracow School of Theoretical Physics (1978). 12pp

Interaction of Electrons, Magnetic Monopoles, and Photons. A I. Tu T.S, Wu T.T., Yang C.N. Sci Sinica 21:317 (1978).

Various Expressions for the Field Strengths of a Monopole with Different Velocities and the Integral Form of the Potential of a Monopole (in Chinese) Tu T.S. Phys Energ Fort Phys Nucl 2:49 (1978).

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Monopoles, Phase Transitions and the Earlv Universe Tye S.H.H; in Proceedings of Guangzhou Conference 0" Theoretical Physics, N. Hu and H-Y. Tzu Eds. (Science Press, Beijing 1980) p.1452

The Non-Singular Vector Potential of a Magnetic Monopole in the Direction of Meridian (in Chinese) Tzu T.P. Phys Energ Fort Phys Nucl 2:93 (1978).

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-53-

602L

603~

604~

605~

606~

607~

608~

609G

61012

611~

612~2

613~

Installation for Dirac Monopole Search on Vavilov-Cherenkov Radiation on the 70 GeV IHEP Proton Synchrotron (in Russian) Vasilenko A.T., Zrelov V.P., Kollarova L.K. Dubna-JINR-13-10074 (1976).

Quantum Theory of Polyakov- 't Hooft Monopole Vergeles S.N., Khokhlachev S.B. Sov J Nucl Phys 26:463 (1977).

Poincare Group and Magnetic Charge Villarroel D. in 9 Theoretical Methods & Physics, R.T. Sharp and 8. Kolman Eds. (Academic Press, New York 1977) p.507

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Topology of Vortices Von Westenholz C. Ann Inst Hen Poin 29:285 (1978).

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On the SU(4) Monopole and Dyon Solutions (in Chinese) Wang K.L., Hsien T.C., Cheng H.T. Phys berg Fort Phys Nucl 2:403 (1978).

The Bound State of a Monopole and a Spinor Field Wang M.Z., Zheng X.T., Wang K.L., Xian D.C., Zhang Z.G. Chengtu-CUST-PT-1980-2 (1980).

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614~

615~

-54-

Spinor Monopole Solution is Possible Wang M.C., Cheng H.T., Wang K.L., Chang C.K., Hsien T.C. Phys merg Fort Phys Nucl 2:35 (1978).

A Series of Sourceless Solution of SU(2) Gauge Fields - The SU(2) and U(1) Potential of Static Monopole Systems (in Chinese) Wang Y.K., Chang K.Y., Hou B.Y Phys tierg Fort Phys Nucl 2:368 (1978).

Existence of Monopoles in SU(3) Yang-Mills-Higgs Theories Weder R. Serie Naranja: Investigaciones lo:202 (1979).

Parameter Counting for Multimonopole Solutions Weinberg E.J. Phys Rev 20D:936 (1979).

Fundamental Monopoles and Multimonopole Solutions for Arbitrary Simple Gauge Groups Weinberg E.J. CERN-m-2779 (1979).

Geometry and Interactions of Instantons Wilczek F. Princeton-76-0718 (1976).

Exact SU(N) Monopole Solutions with Spherical Symmetry Wilkinson D., Bais F.A. Phys Rev 19D:2410 (1978).

Monopole Bound States: An SU(4) Example Wilkinson D. Nucl Phys 125B:423 (1977).

Spherically Symmetric Monopoles Wilkinson D., Goldhaber A.S. Phys Rev 160:1221 (1977).

Dyons of Charge e8/2{ Witten E. Phys Lett 86~:283 (1979).

Supersymmetry Algebras that Include Topological Charges Witten E., Olive D. Phys Lett 78B:97 (1978).

Some Properties of Monopole Harmonics Wu T.T., Yang C.N. Phys Rev 16D:1018 (1977).

Dual Charges of a Subgroup in Gauge Theories - Magnetic Monopoles of SU(2) and SO(3) Gauge Field (in Chinese) Wu Y.S., Chen S., Tu T.S., Kuo H.Y. Phys berg Fort Phys Nucl I:52 (1977).

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6276 A Principal-Bundle Treatment on the Monopoles in the Weinberg-Salam Theory wu Y.S. in Proceedings of Guangzhou Conference z lheoretical Physics, N. Hu and H-Y. Tzu Eds. (Science Press, Beijing 1980) p.1200

628~ The Structure of Principle Bundles for Dual Charges in Gauge Theories Wu Y.S., Kuo H.Y. Sci Sincica 20:186 (1977).

629G Ua s SU2 x U1 Invariance of Principle Bundles for Magnetic Monopoles and its Physical Implications Wu Y.S., Chen S., Kuo H.Y. Sci Sinica 21:193 (1978).

630~ Magnetic Monopoles Yang C.N. in Report on Fifth International Workshop on Weak Interactions -- -- with Ve!y High-bergy c, Y. Tanikawa Ed. (Kobe, Japan 1977)

P.7

631~ Developments in the Theory of Magnetic Monopoles Yang C.N. in Proceedings of the Nineteenth International Conference on --_________- High Energy Physics, S. Homma et al. Eds. (PSJ, Tokyo 1978) -- P.497

632~ Fiber Bundles and the Physics of the Magnetic Monopoles Yang C.N. CERN-m-2725 (1979).

633G Generalization of Dirac's Monopole to SUa Gauge Fields Yang C.N. J Math Phys 19:320 (1978).

634~ Magnetic Monopoles, Gauge Fields and Fiber Bundles Yang C.N. Annals NY Aca Sci 294:86 (1977).

635~ Magnetic Monopoles and Fiber Bundles Yang C.N. CERN-m-2886 (1980).

636~ SU2 Monopole Harmonics Yang C.N. J Math Phys 19:2622 (1978).

637~ A Possible, Consistent Identification of the Monopole Candidate of Price et al -- : A Highly Electrical ly Charged 'Quark'? Yock P.M.C. in Proceedings of the XVII Conference on High Energy Physics --- (Dubna, USSR 1976) p.N26

638~ Condensation of Z(N) Monopoles Yoneya T. Hokkaido-EPHOU-78-16 (1979).

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63%

640G

64i~*

642~

643~

644X

645A

646~

647~

6488

6498

650~

651L*

-56-

Monopole Condensation and Quark Confinement in a Weak Coupling SU(N) Lattice Gauge Model Yoneya T. Nucl Phys 153B:431 (1979).

Stability and Instability of the Wu-Yang Solution of Yang-Mills Field Equation Yoneya T. Phys Rev 16D:2567 (1977).

Topology of Euclidean Yang-Mills Fields: Instantons and Monopoles Yoneya T. J Math Phys 18:1759 (1977).

Monopoles and Direct Action Young K. Nuovo Cim 35B:195 (1976).

Scattering of Light by Light - Prospects for High Order Interactions with Relatively Low Thresholds Yueh W.R. Opt Commun 22:315 (1977).

Charmed Hadrons, Electric Quarks and Magnetic Quarks Zadoo T.K., Ahmad M. Ind J Pure Appl Phys 17:152 (1979).

Classical Orbits of a Charged Particle in a Magnetic Monopole Field Zia R.K.P. Am J Phys 47:700 (1979).

On the Concentration of Relic Magnetic Monopoles in the Universe Zeldovich Y.B., Khlopov M.Y. Phys Lett 79B:239 (1978).

Monopole Harmonics for a Special Gauge Zenaida E.S. Int J Math h Math Sci 1:509 (1978).

The Maximal Time Symmetry of the Monopole Zhu D. Wisconsin-Preprint (1980).

On a Hypothetical Possibility of the Search for Dirac's Monopole Zrelov V.P. Dubna-JINR-DZ-12289 (1979).

On Possible Improvement of Photographic Detector to Search for Dirac Monopole by Vavilov-Cherenkov Radiation Zrelov V.P. Nucl Inst Meth 153:145 (1978).

Search for the Dirac Monopole by Means of Vavilov-Cherenkov Radiation at the 70 GeV IHEP Zrelov V.P., Kollarova L., Kollar D., Lupiltsev V.P., Pavlovic P., Ruzicka J., Sidorova V.I., Shabashov M.F., Janik R. Czech J Phys 26B:1306 (1976).

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AUTHOR INDEX

Adawi I. - 1A Adler S.L. - 2G Agarwal G.S. - 3N Ahlen S.P. - 4N,5N Ahmad M. - 644X Akerlof C.W. - 6N Akhoury Ii. - Alvarez L.W. IG177L,178L Ambjorn J. - 8G* Anandan J. - 9G,lOG Anderson S.K. - 1lA Arcidiacono G. - 12E Ardalan F. - 13G Argyres E.N. - 14T Artru X. - 15H Asorey M. - 16A Aubert B. - 421N,422N

Baaklini N.S. - 17A Bacry H. - 18G Badhwar G.D. - 191 Bais F.A. - 20G,21G,22G,23G,24G,252,26G,27G,28G,29G,3OG,62OG Baker S. - 31N Balachandran A.P. - 32A,33G,34H,35H,36G,37T,38H Balog J. - 39U,282A Banks T. - 40G,hlG,42G,43G Barbiellini G. - 44N Bardakci K. - 45A Barker W.A. - 46H Barricelli N.A. - 47X,48X,49X Barrow J.D. - 50U Bars I. - 51E Bartlett D.F. - 52L,53L,435L Barut A.O. - 54B*,55B,56J,57Dt58D,59D,60X,61C,62E,63E,64B Bassetti B. - 65T Bazhanov V.V. - 665,675 Beker H. - 56J,68A,69J,70X,71X Ben-Menahem S. - 73G Bender C.M. - 72G Benn I.M. - 74F Berley D. - 75N Biedenharn L.C. - 517A Biza Y.S. - 76T Blagojevic M. - 77A,78A Boa1 D.H. - 79H Bogomolny E.B. - 80~" Bollini C.G. - 81G*,82A Bona C. - 83~ Bonnardeau M. - 842 Bonneaud G. - 44N Boratav M. - 85s Borchardt S. - 32A,33G Borodulin V.I. - 665,675

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Boutableb H.J. - 86T Boya L.J. - 16A,87G Brachet M.E. - 88A Brandt R.A. - 89A*,9OH*,9lA,92C,93C,94G,95G,96A,97G,98A,99G Brihaye Y. - IOOG Broderick J.J. - 1OlL Bruce D.J. - 102A Brydges D. - 103G Bulos F. - 75N Bunyatov S.A. - 104L Burke D. - 306T Burzlaff J. - 105G Butera P. - 65T Byckling E. - 342A

Cabibbo N. - 106T Cabrera B. - 107N Cahalan R. - 32A Callan C.G. - 108T Callias C.J. - 109T,llOA Camenzind M. - IIIE Cant A. - 112C Carinena J.F. - 87G Carmeli M. - 113G,114G,115G,116G,117F*,118F,119G,120G Carrigan R.A. - 3lN,l2lP,l22P,123R,l24L Cashmore R.J. - 44N Cervero J.M. - 125G Chakrabarti A, - 86T,l26T,l27G,l28G Ghan H.M. - 129U,130G,13lX Chang C.K. - 614A Chang K.Y. - 615G Chang S.S. - 32A,37lR Charac C. - 120G Chau Wang L.L. - 485~ Cheng D. - 75N Cheng H.T. - 612G,614A Cheng K.S. - 132A,l33H Cheng S.T. - 6llG Chen S. - 626G,629G Chernavskii D.S. - 134G Cho Y.M. - 135A,136G,l37X,l38G Christ N.H. - 139G Chubenko A.P. - 427L Cicuta G. - 65T Coignet G. - 44N Coleman S. - 14OG*,l4lG Comtet A. - l42E Cook G.P. - 143U Corben H.C. - 144E,l45E Corder-o P. - 146~ Cork B. - 75N Cosenza G. - 147G '21x P.H. - 148G Cremmer E. - 149T,266U Creutz M. - 150T,151T,152T,153T,154T Czechowski A. - 155G

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D'Adda A. - 156A Dai X.X. - 157A Daniel M. - 158U Dashen R. - 108T Dattoli G. - 159D, 160E De Angelis G.F. - 16lG De Falco D. - 16lG De Vecchia P. - 156A,167A DeRaad L.L. - 412H Dereli T. - 74F Di Liberto S. - 261L Diets K. - 162T Dimopoulos S. - 163G Dipoko J. - 128G Dirac P.A.M. - 164R,l65T,l66R Dobson P.N. - 168A Dokos C.P. - 169U Dolgov A.D. - 1702 Doria F.A. - 17lG Dowel1 J.D. - 1725 Drell S.D. - 173s Drukier A.K. - 842,174Z Duan Y.S. - 2750 Duff M.J. - 175B Durgaprasad N. - 176M

Eberhard P.H. - 177L,l78L Eguchi T. - 72G Einhorn M.B. - 17gz,180G,181Z,182G,183Z Ellis J. - 44N,184T,185U Englert F. - 186T,l87X,l88A Epstein J. - 600N Ezawa Z.F. - 189H,190T,191T,192G,193G*

Faddeev L.D. - 194G,l95G Falik D. - 1961,197N Felsager B. - 198A Ferrari E. - 199D Ferreira P.L. - 82A Ficenec J.R. - IOIL Filk T. - 162T,ZOOA Fink&stein D. - 201T Fischler M. - 113G Flyvbjerg H. - 8G Forgacs P. - 202G,203G Fradkin E. - 204G Frampton P.H. - 205G Frank I.M. - 206N Franke V.A. - 490T,49lH Frankel S. - 207R Frenkel A. - 208A,209C*,2lOE

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-6O-

Freund P.G.O. - 211G,212G Friedman J.L. - 213B,214A,215A Frohlich J. - 103G Frolov I.V. - 510G Fry J.N. - 2162 Fryberger D. - 217X,218D Fukgita M. - 219T Fustero X. - 83A,229E

Gaillard M.K. - 44N Galitskii V. - 22lR Gallop J.W. - 222F Gambni R. - 223D Garbaczewski P. - 224A Garwin L.J. - 2258 Garwin R.L. - 2258 Ge M.L. - 275G Gervais J.L. - 226G Giacomelli G. - 124L,227L,228S Giambiagi J.J. - 8lG* Gibbons G.W. - 220A Glashow S.L. - 2305,231S Gliozzi F. - 232H Goddard P. - 233G,234A,235G Goldberg J.N. - 236G Golden R.L. - 191 Goldhaber A.S. - 7G,237G,238N,239A,240C,322J,622A Goldman T. - 241F Graziani F. - 46H Greensite J.P. - 242T Greub W.H. - 243A Grivaz J.F. - 44N Gross D.J. - 108T,244T Gu C.H. - 245G,246G Guerra F. - 16lG Guo S.H. - 368G Guth A.H. - 2472,248Z ,599G

Hagstrom R. - 476N Hajicek P. - 2492 Hansson T.H. - 219T Harrington B.J. - 250T,25lT Hart F.X. - 252N Hasenfratz P. - 253G Hegedues E. - 254D Hirata K. - 255D,256A,257A Hirayama M. - 258G,259G Hodson A.L. - 260M Hoffmann H. - 261L Honda M. - 262G,263G Horn D. - 40G Horndeski G.W. - 264E Horsley R. - 156A Horvath Z. - 202G,203G,265G,266U,267U*,268G,269G*,27OG

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-6l-

Horvathy P.A. - 27lA,272A Hosoda M. - 273A,274A Hou B.Y - 275G,615G Houston P. - 276A,277A,278A,279A,280G Hrasko P. - 39u,209c*,28lB,282A Hruby J. - 283G Hsien T.C. - 284G,360G,611G,612G,614A Hsu J.P. - 285A,286G,287G Hu H.S. - 2456 Huang K. - 288G Huerta R. - 28% Hughes R.J. - 290A

Ikeda M. - 29lG Inomata A. - 292B Isham C.J. - 2933 Ishikawa K. - 294G

Jack& R. - 139G,295A,296G,297C Jackson J.D. - 298A Jacob M. - 227L Jadczyk A.Z. - 299B Jaffe A. - 300A Jang P.S. - 236G,30lA Janik R. - 65lL* Jehle H. - 302B',303A Jersak J. - 304G Jha S.S. - 3N Johnson C.R. - 305E Jones L.W. - 306T,307S Joos H. - 308T Ju I. - 309G Jun J.H. - 7G

Kalb M. - 310G,311H,312G Kamat R.V. - 313A,314D Kamata M. - 315G,316G Kantardjian G. - 261L Karpf A.D. - 317G Kawai T. - 29lG Kaye M. - 117F*,118F,120G Kazama Y. - 318A,319A,320A,32lA,322J Kennedy A. - 3232 Kerner R. - 134G,32’+G,325G,326G Khlopov M.Y. - 646P Khokhlachev S.B. - 603G Khorvat P. - 337N Kibble T.W.B. - 3272' Kiera M. - 304G Kim Y. - 328A,334A,335A,336A King A.R. - 3292 Kirzhnits D.A. - 330A Kiskis J. - 331G

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Kobiske R.A. - 3323,333E Kogut J. - 42G Koh I.G. - 328A,33'+A,335A,336A Kolb E.W. - 241F Kollar D. - 337N,65lL* Kollarova L.K. - 337N,602L,65lL* Konishi K. - 219T Konopelchenko B.G. - 338A Kovacs E. - 33913 Kozakai H. - 273A,274A Krolikowski W. - 340X Kruglov S.I. - 341A Kuo H.Y. - 626G,628G,629G Kuo S.H. - 284G,360G Kupiainen A. - 342A Kursunoglu B. - 343F,344G Kyriakopoulos E. - 345D,346D,347G

Mac E. - 287G Ma&owe11 S.W. - Mack G. - 376G

Lacy J.L. - 191 Lake T.W. - 348G Lam C.S. - 14T langacker P. - 349U,35OU,35lU Lanyi G. - 352G,353G Lapiedra R. - 220E Lazarides G. - 158U,323Z,354U,355Z,356U,357Z,358U Lsbrun J.P. - 359G Lee H.C. - 284G,360G Lee T.D. - 362G Lee T.P. - 361A Leinaas J.M. - 198A,363R,364A,365C Lemke H. - 3663 Leznov A.N. - 367G Li H.Z. - 368G Libby S.B. - 369G Limon P. - 75N Linde A.D. - 3702 Litke A. - 75N Liu C. - 37lR Lohe M.A. - 372A Long0 M.J. - 306T,373N Lubkin E. - 374F Lugo V.A. - 375G Lupiltsev V.P. - 65lL'

5lE

Madore J. - 175B,377F,378A,37% Maetzler C. - 380Q Ma M. - 304G,356U Magruder S.F. - 38lA,382A Mahanthappa K.T. - 143U Mainland G.B. - 383A Maison D. - 384A,385G

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-6%

Mandelstam S. - 386G Mankin R. - 387F Manton N.S. - 388A,38%,390A Marciano W.J. - 39lG,392G Marma G. - 34H,38H t-h L. - 83~,220~ Massey J.S. - 252N Mateos J. - 87G Matteuzzi C. - 44N Mattioli M. - 160E Mayer M.E. - 393G Mayer S. - 213B Mckeon G. - 394G,395G,39'.%,397G,39% Mecklenburg W. - 399G Meddi F. - 261L Michel L. - 400G Micu M. - 401A Miglietta F. - 402G,403F

Milton K.A. - 412H Minami M. - 413A,414G Moffat J.W. - 416~ Montonen C. - 417G Moshir M. - 418A Mottola E. - 419A,420G Mot2 L. - 600~ Musha T. - 546T Musset P. - 42lN,422N Myerson R. - 42G

Nahm W. - 423G,424A,425G,426G Nakagawa N. - 428G Nam R.A. - 427L Nambu Y. - 429H,430G,43lH,432G Nanopolulos D.V. - 433U Nance J.R. - 305E Narain K.S. - 434G Nauenberg U. - 75N,435L Neri F. - 92C,93C,94G,95'2,96A,97G,99G,147G,436G Nesic D. - 78A Nesterova N.M. - 427L Neveu A Nezrick'F: 14$N" Ni W.T. - 437H Nielsen H.B. - 438G Nikolskii S.I. - 427L Noakes D.R. - 79H Nojima K. - 25711 Novello M. - 439E Nuyts J. - 18G,100G,233G

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-6'L

O'Brien D.P. - 399G O'Raifeartaigh L. - 276A,277A,278A,279A,28OG,4OOG,44lG*,442A,443A Oberlack H. - 177L Oh C.H. - 444G,445G Okabayashi T. - 446T Olesen P. - 438~ Olive D. - 233G,235G,417G,447R,448R,449E,450A,45lA,624G Onofri E. - 452T Opher R. - 1961,197N Orfanidis S.J. - 384A Osborn H. - 453G Osborne W.Z. - 488L,489L Ozaki S. - 454A,455A,456A,457A,458A

Pagels H.R. - 72G,392G Palla L. - 202G,203G,265G,266U,267U*,268G,269G*,27OG Pappas R. - 3520 Parida B.K. - 524T Parisi G. - 106T,460G,46lA Park S.Y. - 236G,30lA,443A Park Y.J. - 328A Parkash 0. - 459A Parke S. - 14OG* Parker B. - 28% Parker E.N. - 462P Parker L. - 213B,332E,333E Parsa Z. - 392G,463%,464G Pati J.C. - 465X Patkos A. - 466G* Patrascioiu A. - 4673 Pavlovic P. - 468R,65iL* Pavlyuchenko V.P. - 427L Peccei R.D. - 44N Perepelitsa V.F. - 469L Perlmutter A. - 470R* Peskin M.E. - 471G Pestov A.B. - 472A Petkova V.B. - 376G Pi S-Y. - 35lU,473U Pickering A. - 474R,475R Piir I. - 387F Pinsky L.S. - 476N,488K,489L Pohlmeyer K. - 477T Popov V.N. - 478~ Prakash 0. - 495D Prasad M.K. - 47gG,480G,481G,482G,483G,484G,485G Prasanna A.R. - 486T Preskill J.P. - 4872 Price M. - 42lN,422N Price P.B. - 488K,489L Primack J.R. - 27G,89AY,90H*,98A Prokhvatilov E.V. - 490T,49lH Pron'ko G.P. - 665,675 Protogenov A.P. - 492G

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Quigg C. - 493T

Rajasekaran G. - 494T Rajput B.S. - 495D Ramachandran R. - 32A,35H,37T,496F,497R,498A Rao M.V.S. - 176M Rautian S.G - 499P Raval V.M. - 496F Rawnsley J.H. - 442A,500G,50lA Rebbi C. - 502G,503T Recami E. - 405E,504E,505E,506E,507A,508E Ricci M. - 403F Riva F. - 65T Romakhin V.A. - 427L Roman0 G. - 261L Romanov V.N. - 509G,510G Rosa G. - 261L Rosen J. - 75N Ross D.A. - 253G Ross G.G. - 50U Ross R.R. - 177L,l78L Rossi P. - 479G,480G,483G,484G,502G,511G,512G,513G,514A,515A Roth R. - 516A Ruck H.M. - 517A Rudaz S. - 252 Rund H. - 518D Rupertsberger H. - 32A,35H,36G,37T Russell R.J. - 24G Ruzicka J. - 519A,65lL* Ryder L.H. - 520A,52lA

Safonov V.P. - 499P Salamo S. - 223D Salim J.M. - 439E Samuel S.A. - 45A,523T Sastry G.P. - 524T Satikov I. - 525B Sato K. - 179Z Saveliev M.V. - 367G Savit R. - 180G,l82G Sawada T. - 526A,527A,528A,529A,530A,531A,532A Sayed W.A. - 533G,534G Schechter J. - 35H,36G Schechter M. - 536A Scherk J. - 149T,266U Schiff H. - 537A Schlitt D.W. - 538D Schmidt I.A. - 539T Schonfeld J.F. - 540A Schramm D.N. - 2162 Schwarz A.S. - 509G,510G,54lA Scott D.M. - 542G,543U1544U,545U Seiler E. - 103G Sekine M. - 546T

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Senjanovic P. - 77A,78A Shabashov M.F. - 65lL* Shafi 9. - 158U,323z,354U,355Z,356U,357Z,358U,535U Shankar R. - 547G* Sharma S.P. - 548R Shen B. - 75N Shepard H.K. - 250T,25lT Shirk E.D. - 488L,489L Sidorova V.I. - 65lL* Sijacki D. - 78A Sikivie P. - 549G Singh V. - 550T Sinha A. - 485G,55lG,552G Sinha K.P. - 553T Sivaram C. - 553T Skagerstam B.S. - 38H Slad L.M. - 556T Smirnov G.I. - 499P Smolyakov N.V. - 5555 Soares I.D. - 557T Soh K.S. - 154T Sokolov V.V. - 55811 Solov'ev L.D. - 665,675 Sommerfield C.M. - 140G* Soo D. - 52L Sorkin R.D. - 214A,215A,559A,560A Spiegelglas M. - 43G Srednicki M. - 561U Stein D.L. - 183~ Steinhardt P.J. - 526G Stephens S.A. - 191 Stern A. - 3ZA,33G,34H,38H,563G Stone M. - 564X* Stora R Strauss'B:P?~G124L Strazhev V.I. - 34lA,525B,566C Stuart S. - 522G Stump D.R. - 288G,567T Sugawara H. - 568G,569T,570A Sulak L. - 75N Susskind L. - 204G,56lU Suura H. - 571H Swieca J.A. - 5722

't Hooft G. - 573G,57'+G,575G Takasugi E. - 383A Tanaka K. - 383A Tataru-Mihai P. - 576U,577G Taubes C.H. - 300A,578G,579G Tayler R.J. - 5802 Taylor J.D. - 177L Tchrakian D.H. - 500G,58lG,582G,583G,584G Teplitz D.C. - IOIL Teplitz V.L. - IOIL Teramoto Y. - 5858

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Thomas G.H. - 58611 Thomas P.R. - 564X* Tirapegui E. - 88A Tolkachev E.A. - 578C Tomaras T.N. - 169U Tomboulis E. - 4lG,588G Tomil'chik L.M. - 76T,587C Toussaint D. - 183Z,24lF,589G Trefil J.S. - 75N,5901 Treiman S.B. - 244T Trinkala M. - 2928 Troost W. - 29G,59lA Trower W.P. - 5929 Tsou S.T. - 129U,l30G,l3lX,593G Tu T.S - 594A,595A,626G Tuan S.F. - 168A Tucker R.W. - 74F,596G Tye S.H.H. - 2472,597Z Tyupkin Y.S. - 509G Tze H.C. - 193G*,258G Tzu T.P. - 598A

Ukawa A. - 599G Ullman J.D. - 600N Urrutia L.F. - 6015

Vasilenko A.T. - 602L Vergeles S.N. - 603G Vialle J.P. - 42lN,422N Villarroel D. - 604E,605E Vishwanath P.R. - 306T Viswanathan K.S. - 606G Von Westenholz C. - 607G vysin v. - 608~

Wadia S.R. - 609G,6lOG Wali K.C. - 35H,236G,30lA,400G,443A Walsh T.F. - 3572 Wang K.L. - 611G,612G,613A,614A Wang M.C. - 614A Wang M.Z. - 613A Wang Y.K. - 615~ Watt R.D. - 178L Weder R. - 616G Weinberg E.J. - 248Z,617G,618G Weiss N Weldon ;1.,.5!g",2G Wetterich C. - 358U White M.G. - 52L,53L Wiik B.H. - 44N Wilczek F. - 244T,58%,619G Wilkinson D. - 237G,620G,621G,622A Windey P. - 186T,l88A,599G

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Winkelmann F. - 75N Witten E. - 623A,624G Woo G. - 588G Wu T.T. - 594A,625A wu Y.S. - 626G,627G,628G,629G

Xian D.C. - 368G,613A

Yakolev V.I. - 427L Yang C.N. - 246G,320A,322J,594A,625A,630R,63lR,632R,633G,634R,635R,636A Yee J.H. - 606~ Yen H.C. - 437H Yildiz A. - 148~ r0Ok P.M.C. - 637~ Yoneya T. - 638G,639G,640G,64lG* Yoon S.H. - 328A Yoshida H. - 291G Young K. - 9lA,642A Yueh W.R. - 643T

Zadoo T.K. - 644~ Zanon D. - 65T Zeldovich Y.B. - 1702,646P Zenaida E.S. - 6470 zhang Z.G. - 613~ Zheng X.T. - 613A zhu D. - 648~ Zia R.K.P. - 6458 Ziino G. - 504E Zivanovic D. - 78A Zrelov V.P. - 602L,649N,650N,65lL* Zwanziger D. - 92C,93C