DocumentCode
819463
Title
Design and performance of the soft gamma-ray detector for the NeXT mission
Author
Tajima, H. ; Kamae, T. ; Madejski, G. ; Mitani, T. ; Nakazawa, K. ; Tanaka, T. ; Takahashi, T. ; Watanabe, S. ; Fukazawa, Y. ; Ikagawa, T. ; Kataoka, J. ; Kokubun, M. ; Makishima, K. ; Terada, Y. ; Nomachi, M. ; Tashiro, M.
Author_Institution
Stanford Linear Accel. Center, Kavli Inst. of Particle Astrophys. & Cosmology, Menlo Park, CA
Volume
52
Issue
6
fYear
2005
Firstpage
2749
Lastpage
2757
Abstract
The soft gamma-ray detector (SGD) onboard the Japanese future high energy astrophysics mission (NeXT) is a Compton telescope with narrow field of view, which utilizes Compton kinematics to enhance its background rejection capabilities. It is realized as a hybrid semiconductor gamma-ray detector which consists of silicon and cadmium telluride (CdTe) detectors. It can detect photons in a wide energy band (0.05-1 MeV) at a background level of 5 times10-7 counts/s/cm2/keV; the silicon layers are required to improve the performance at a lower energy band (<0.3 MeV). Excellent energy resolution is the key feature of the SGD, allowing it to achieve both high angular resolution and good background rejection capability. An additional capability of the SGD, its ability to measure gamma-ray polarization, opens up a new window to study properties of astronomical objects. We will present the development of key technologies to realize the SGD: high quality CdTe, low noise front-end application-specific integrated circuit, and bump bonding technology. Energy resolutions of 1.7 keV (full-width at half-maximum) for CdTe pixel detectors and 1.1 keV for Si strip detectors have been measured. We also present the validation of Monte Carlo simulation used to evaluate the performance of the SGD
Keywords
Compton effect; Monte Carlo methods; astronomical techniques; gamma-ray detection; silicon radiation detectors; CdTe detectors; CdTe pixel detectors; Compton camera; Compton kinematics; Compton telescope; Japanese future high energy astrophysics mission; Monte Carlo simulation; NeXT mission; SGD onboard; Si strip detectors; astronomical objects; background rejection capabilities; bump bonding technology; cadmium telluride detectors; energy resolution; gamma-ray polarization; hybrid semiconductor gamma-ray astronomy detector; low noise front-end application-specific integrated circuit; polarimetry; silicon layers; silicon radiation detectors; soft gamma-ray detector; Astrophysics; Energy resolution; Extraterrestrial measurements; Gamma ray detectors; Integrated circuit measurements; Integrated circuit technology; Kinematics; Silicon; Space technology; Telescopes; Cadmium telluride (CdTe); Compton camera; gamma-ray astronomy detectors; polarimetry; silicon radiation detectors;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2005.862776
Filename
1589273
Link To Document