DocumentCode :
3530338
Title :
Neutron imaging using the anisotropic response of crystalline organic scintillators
Author :
Brubaker, Erik ; Steele, John
Author_Institution :
Sandia Nat. Labs., Livermore, CA, USA
fYear :
2010
fDate :
Oct. 30 2010-Nov. 6 2010
Firstpage :
1647
Lastpage :
1652
Abstract :
An anisotropy in a scintillator´s response to neutron elastic scattering interactions can in principle be used to gather directional information about a neutron source using interactions in a single detector. In crystalline organic scintillators, such as anthracene, both the amplitude and the time structure of the scintillation light pulse vary with the direction of the proton recoil with respect to the crystalline axes. Therefore, we have investigated the exploitation of this effect to enable compact, high-efficiency fast neutron detectors that have directional sensitivity via a precise measurement of the pulse shape. We report measurements of the pulse height and shape dependence on proton recoil angle in anthracene, stilbene, p-terphenyl, diphenyl anthracene (DPA), and tetraphenyl butadiene (TPB). Image reconstruction for simulated neutron sources is demonstrated using maximum likelihood methods for optimal directional sensitivity.
Keywords :
image reconstruction; neutron detection; neutron sources; solid scintillation detectors; crystalline axes; crystalline organic scintillators; directional information; fast neutron detectors; image reconstruction; neutron elastic scattering interactions; neutron imaging; neutron source; optimal directional sensitivity; proton recoil; proton recoil angle; scintillation light pulse; simulated neutron sources; Anisotropic magnetoresistance; Crystals; Detectors; Image reconstruction; Neutrons; Protons; Shape;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record (NSS/MIC), 2010 IEEE
Conference_Location :
Knoxville, TN
ISSN :
1095-7863
Print_ISBN :
978-1-4244-9106-3
Type :
conf
DOI :
10.1109/NSSMIC.2010.5874055
Filename :
5874055
Link To Document :
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