development of neutron dosimetry & spectrometry using track detectors
DESCRIPTION
Esr 13. Development of neutron dosimetry & spectrometry using track detectors. Alvin Sashala Naik. Under the coordination of: Dr. A. Parravicini & Prof. M. Caresana. Mauritius island!!. Mauritius. Developing country with a diversified economy Independent since 1968 - PowerPoint PPT PresentationTRANSCRIPT
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Alvin Sashala Naik
Under the coordination of:Dr. A. Parravicini & Prof. M. Caresana
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Annual ARDENT meeting Vienna 2012 2
Mauritius island!!
21/04/23
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Mauritius
• Developing country with a
diversified economy
• Independent since 1968
• Multicultural population of 1.2 M
inhabitants
• Volcanic island of lagoons and
white sand beaches
• Unfortunately, lack of
infrastructures at the UoM to study
advanced experimental physics
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Education BSc degree in Applied Physics
University of Paris Sud 11
MSc degree in Fusion Science and Technologies
• Commissariat à l’Energie Atomique (CEA), Ecole Polytechnique de
Palaiseau & Université Paris Sud 11
• Diagnostics for Inertial and Magnetic confinement fusion devices
• Simulation of the wall surface damage from high energy particles
in the International Thermonuclear Experimental Reactor
(ITER Organization)
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ARDENT
• PhD on Neutron dosimetry and spectrometry with track detectors
• Early Stage Researcher (ESR) n° 13• Starting PhD on January 2013 due to delay on visa
and residence permit process...• Further partnerships with AIT, CERN• Possible research collaboration with CNAO
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Host organisations
• MI.AM
– Development of instruments for measuring ambient radiation
– Radon detection– POLITRACK system for
automatic analysis of track detectors
• POLIMI
– Hosting university for the PhD project
– Development of adapted Monte Carlo codes
– Statistical physics– Further investigation
into personal and environmental neutron dosimetry
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Development of neutron dosimetry and spectrometry using track
detectors
1. Use of CR-39 track detector coupled to a boron converter, as thermal neutron detector (exploiting the n,α reaction on 10B), inside Bonner spheres and REM counters.– The neutron is detected by the 1.47 MeV α
particle.
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Use of CR39 as thermal neutron detector
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Development of neutron dosimetry and spectrometry using track
detectors• Use the recoil protons (radiator-degrader
technique). – The number of tracks is proportional to the fast neutron
fluence. – The detection efficiency depends on the neutron energy.
• Calculation of particle LET and impinging angle. – Direct estimate of the equivalent dose by calculating, for
any particle the dose and the quality factor Q(LET) .
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11
Cone shape track left after chemical treatment (Etching)
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Image processing with POLITRACK
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• Vt measured from geometrical parameters of tracks formed
• LET deduced from V
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Work in perspective:
- A full Monte Carlo characterization of the dosimeters- Angular response still to be understood
- Metrological characterization for personal and environmental dosimetry
- Medical physics application (?) : secondary dose evaluation due to fragments, with LET spectrometry
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Thank you for your attention!