DocumentCode
870045
Title
Design and Testing of a Position-Sensitive Plastic Scintillator Detector for Fast Neutron Imaging
Author
Bravar, Ulisse ; Bruillard, Paul J. ; Fluckiger, E.O. ; Macri, John R. ; McConnell, Mark L. ; Moser, Michael R. ; Ryan, James M. ; Woolf, Richard S.
Author_Institution
Space Sci. Center, New Hampshire Univ., Durham, NH
Volume
53
Issue
6
fYear
2006
Firstpage
3894
Lastpage
3903
Abstract
We describe the design and performance of a position sensitive scintillator detector developed for neutron measurements. Several of these detectors are to be used in the assembly of the Fast Neutron Imaging Telescope (FNIT), an instrument with imaging and energy measurement capabilities, sensitive to neutrons in the 2-20 MeV energy range. FNIT was initially conceived to study solar neutrons as a candidate instrument for the Inner Heliospheric Sentinels (IHS) program under formulation at NASA. It is now being adapted to locate Special Nuclear Material (SNM) for homeland security purposes by detecting fission neutrons and reconstructing the image of their source. The detection principle is based on multiple elastic neutron-proton scatterings in organic scintillator. The detector presented here utilizes wavelength-shifting (WLS) fibers, grooved into the plastic scintillator and read out by multianode photomultiplier tubes (MAPMTs) to determine scattering locations. By also measuring the recoil proton and scattered neutron´s energies, the direction and energy spectrum of incident neutrons can be determined and discrete sources identified
Keywords
neutron detection; neutron spectroscopy; nuclear electronics; photomultipliers; position sensitive particle detectors; readout electronics; solid scintillation detectors; FNIT; Fast Neutron Imaging Telescope; IHS program; Inner Heliospheric Sentinels program; MAPMTs; NASA; SNM; Special Nuclear Material; WLS fiber readout; fission neutrons detection; homeland security purposes; multianode photomultiplier tubes; multiple elastic neutron-proton scatterings; neutron measurements; neutron spectroscopy; organic scintillator; position sensitive plastic scintillator detector; recoil proton energy; scattered neutron energy; solar neutrons; wavelength-shifting fibers; Assembly; Energy measurement; Instruments; Neutrons; Plastics; Position measurement; Position sensitive particle detectors; Scattering; Telescopes; Testing; Neutron imaging; neutron spectroscopy; scintillation detectors; wavelength-shifting (WLS) fibers;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2006.886046
Filename
4033267
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