25 years after the discovery: some current topics on lensed qsos

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25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs Santander (Spain), 15th-17th December 2004 Transverse velocities of QSOs from microlensing parallax Tyoma Tuntsov, Mark Walker and Geraint Lewis Sydney Uni

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25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs Santander (Spain), 15th-17th December 2004. Transverse velocities of QSOs from microlensing parallax. Tyoma Tuntsov, Mark Walker and Geraint Lewis Sydney Uni. Outline of the talk. What is the annual parallax effect? - PowerPoint PPT Presentation

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Page 1: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Santander (Spain), 15th-17th December 2004

Transverse velocities of QSOs from microlensing parallax

Tyoma Tuntsov, Mark Walker and Geraint Lewis

Sydney Uni

Page 2: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Outline of the talk

• What is the annual parallax effect?

• How can it be used to determine the transverse velocity in the system?

• Where can we find the effect?

• (Bad) Illustration – QSO2237+0305

• Conclusions and Outlook

Page 3: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

• What is the annual parallax effect?• Natural formalism for microlensing• What is the annual parallax effect?• What is it telling us?

• How can it be used to determine the transverse velocity in the system?

• Where can we find the effect?

• (Bad) Illustration – QSO2237+0305

• Conclusions and Outlook

Outline of the talk

Page 4: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Natural formalism for microlensing(Gould, 2000, ApJ, 542, 785)

• All quantities projected onto observer plane• Coordinate frame is fixed by source and lens• Many things (those related to observer motion) look simpler!

Page 5: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is the annual parallax effect?

constF 0

),()(0 ttFF r )()(

),(lg5.20

ttt

tmm

ervr

r

Page 6: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

),( tr

• Galaxy: Optical depth is low

Schwarzschild lens model for

Er

ty

yy

y

|)(|

4

2)(

0

2

2

rr

r

OGLE-1999-Bulge-19 (Smith et al., 2002, MNRAS, 336, 670)

Page 7: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

),( tr

• Galaxy: Optical depth is low

Schwarzschild lens model for

• Microlensed QSOs:

can be anything

Er

ty

yy

y

|)(|

4

2)(

0

2

2

rr

r

),( tr1~

Page 8: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

),( tr

• Galaxy: Optical depth is low

Schwarzschild lens model for

• Microlensed QSOs:

can be anything

Er

ty

yy

y

|)(|

4

2)(

0

2

2

rr

r

),( tr1~

Page 9: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

),( tr

• Galaxy: Optical depth is low

Schwarzschild lens model for

• Microlensed QSOs:

can be anything

Er

ty

yy

y

|)(|

4

2)(

0

2

2

rr

r

),( tr1~

Page 10: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

),( tr

• Galaxy: Optical depth is low

Schwarzschild lens model for

• Microlensed QSOs:

can be anything

Use Taylor expansion:

Er

ty

yy

y

|)(|

4

2)(

0

2

2

rr

r

),( tr1~

))(()()( 000 rr tttt

t

Page 11: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

What is it telling us?

)()( 0 ttt ervrr

)( 00 ttTmm ii

),( yxe r

),( YXm

mt

mT

v

)()( 00 yyYxxX ii

mtttt

mmtm ))(()()( 000 rr

Page 12: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

• What is the annual parallax effect?• How can it be used to determine the

transverse velocity in the system?– Correlation between (T, X, Y)

coefficients in different images– Individual velocities and magnification

matrices

• Where can we find the effect?• (Bad) Illustration – QSO2237+0305• Conclusions and Outlook

Outline of the talk

Page 13: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Correlations between (T, X, Y) coefficients in different images

mt

mT

v

jj mT v

jjj YXT yx vv

Thus, at least three images required

mtttt

mmtm ))(()()( 000 rr

Page 14: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Individual velocities and magnification matrices

jjj uAvv ˆ0

)|ˆ|( 1 jj A

0|ˆ| vuA jj• Assume

OR• Use independent regions of O-plane plus additional info

Page 15: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

• What is the annual parallax effect?

• How can it be used to determine the transverse velocity in the system?

• Where can we find the effect?– Order-of-magnitude argument– QSO wish list

• (Bad) Illustration – QSO2237+0305

• Conclusions and Outlook

Outline of the talk

Page 16: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Order-of-magnitude argument

• How good is linear approximation?

• Rescaling to Einstein units:

mmtmm e )(0 rv

mrr

tmm E

E

e

rv

0

22)( Dt erv

mDrr

tE

E

e

2

2

2rv

Page 17: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Order-of-magnitude argument

• How good is linear approximation?

• Rescaling to Einstein units:

mmtmm e )(0 rv

mrr

mrr

tmm E

E

eE

E

rv

0

22)( Dt erv

mDrr

tE

E

e

2

2

2rv

Page 18: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Order-of-magnitude argument

• How good is linear approximation?

• Rescaling to Einstein units:

mmtmm e )(0 rv

mrr

mrr

tmm E

E

eE

E

rv

0

22)( Dt erv

mDrr

tE

E

e

2

2

2rv

Signal S

Page 19: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Order-of-magnitude argument

• How good is linear approximation?

• Rescaling to Einstein units:

mmtmm e )(0 rv

mrr

mrr

tmm E

E

eE

E

rv

0

22)( Dt erv

mDrr

tE

E

e

2

2

2rv

Noise N

Signal S

Page 20: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Order-of-magnitude argument

• ,

– Optimal t ~ 1 year

1~mrE

mrr

tS E

E

e )(r

mDrr

tN E

E

2

2

2v

1~22DrE

mDr

r

t

r

rNS E

EE

e2

2

2

::v

Page 21: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Go Green

LS

SLLE D

DD

cGMzr 24)1(

Page 22: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Go Green(if it works)

LS

SLLE D

DD

cGMzr 24)1(

LSL

SLcr DD

DGcz 4)1(2

Page 23: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Go Green(if it works)

LS

SLLE D

DD

cGMzr 24)1(

LSL

SLcr DD

DGcz 4)1(2

Page 24: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity

Page 25: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity• Highly symmetric configuration

• Intrinsic variability constraint• bulk velocity constraints

Page 26: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity• Highly symmetric configuration

• Intrinsic variability constraint• bulk velocity constraints

• The lens is NOT:• a virialized cluster member• massive elliptic galaxy

Page 27: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity• Highly symmetric configuration

• Intrinsic variability constraint• bulk velocity constraints

• The lens is NOT:• a virialized cluster member• massive elliptic galaxy

• The system is not far from the direction of Solar system motion with respect to CMB (additional 350 km/s)

Page 28: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity• Highly symmetric configuration

• Intrinsic variability constraint• bulk velocity constraints

• The lens is NOT:• a virialized cluster member• massive elliptic galaxy

• The system is not far from the direction of Solar system motion with respect to CMB (additional 350 km/s)• Narrow-band observations are possible

Page 29: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

QSO Wish List

• Redshifts of order unity• Highly symmetric configuration

• Intrinsic variability constraint• bulk velocity constraints

• The lens is NOT:• a virialized cluster member• massive elliptic galaxy

• The system is not far from the direction of Solar system motion with respect to CMB (additional 350 km/s)• Narrow-band observations are possible

And it should be bright, favourably located on the sky, year-around observable etc..

Page 30: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

• What is the annual parallax effect?

• How can it be used to determine the transverse velocity in the system?

• Where can we find the effect?

• (Bad) Illustration – QSO2237+0305

• Conclusions and Outlook

Outline of the talk

Page 31: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Application to QSO2237+0305

OGLE-II (Wozniak et al., 2000, ApJ, 529, 88)

Page 32: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Application to QSO2237+0305

OGLE-II (Wozniak et al., 2000, ApJ, 529, 88)

Page 33: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Weird velocities

• Effective transverse velocity

• Using a different method

(Schmidt, Webster & Lewis, 1998, MNRAS, 295, 488)

km/s)21,715(0 vkm/s)42,205( Av

km/s)64,2024( Bv

km/s)207,11014( Cv

km/s)17,420( Dv

km/s)22,98(0 vkm/s)54,2042( Au

km/s)712,1749( Bu

km/s)201,4020( Cu

km/s)216,513( Du

Page 34: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

• What is the annual parallax effect?

• How can it be used to determine the transverse velocity in the system?

• Where can we find the effect?

• (Bad) Illustration – QSO2237+0305

• Conclusions and Outlook

Outline of the talk

Page 35: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Conclusions and Outlook

• Photometric monitoring of some QSOs can help determine 3D picture of their motion

• Little chance to know

a priori where the method will work

• Photometric accuracy is most important

• More data are needed• Try it yourself!

Page 36: 25 YEARS AFTER THE DISCOVERY: SOME CURRENT TOPICS ON LENSED QSOs

Thank you for your attention!