Journal of Synthetic Crystals, Volume. 50, Issue 10, 1883(2021)
Analysis on Energy Spectra for CdZnTe Gamma Ray Detector
[1] [1] SCHLESINGER T E, TONEY J E, YOON H, et al. Cadmium zinc telluride and its use as a nuclear radiation detector material[J]. Materials Science and Engineering: R: Reports, 2001, 32(4/5): 103-189.
[2] [2] EISEN Y, SHOR A. CdTe and CdZnTe materials for room-temperature X-ray and gamma ray detectors[J]. Journal of Crystal Growth, 1998, 184/185: 1302-1312.
[3] [3] SZELES C. Advances in the crystal growth and device fabrication technology of CdZnTe room temperature radiation detectors[J]. IEEE Transactions on Nuclear Science, 2004, 51(3): 1242-1249.
[4] [4] LIMOUSIN O. New trends in CdTe and CdZnTe detectors for X- and gamma-ray applications[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2003, 504(1/2/3): 24-37.
[6] [6] MCGREGOR D S, HERMON H. Room-temperature compound semiconductor radiation detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1997, 395(1): 101-124.
[8] [8] GEHRELS N. The Swift γ-ray burst mission[J]. New Astronomy Reviews, 2004, 48(5/6): 431-435.
[9] [9] KRAWCZYNSKI H S, JUNG I, PERKINS J S, et al. Thick CZT detectors for spaceborne X-ray astronomy[C]//Optical Science and Technology, the SPIE 49th Annual Meeting. Proc SPIE 5540, Hard X-Ray and Gamma-Ray Detector Physics Ⅵ, Denver, Colorado, USA. 2004, 5540: 1-13.
[10] [10] HONG J, ALLEN B, GRINDLAY J, et al. Building large area CZT imaging detectors for a wide-field hard X-ray telescope—ProtoEXIST1[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2009, 605(3): 364-373.
[11] [11] TAKAHASHI T, MITSUDA K, KELLEY R, et al. The ASTRO-H X-ray astronomy satellite[C]//SPIE Astronomical Telescopes + Instrumentation. Proc SPIE 9144, Space Telescopes and Instrumentation 2014: Ultraviolet to Gamma Ray, Montréal, Quebec, Canada. 2014, 9144: 914425.
[12] [12] BHALERAO V, BHATTACHARYA D, VIBHUTE A, et al. The cadmium zinc telluride imager on AstroSat [J]. J Astrophysics Astron, 2017, 38(2): 31.
[13] [13] RANA V R, HARRISON F A, et al. Development of focal plane detectors for the nuclear spectroscopic telescope array (NuSTAR) mission[C]//SPIE Optical Engineering + Applications. Proc SPIE 7435, UV, X-Ray, and Gamma-Ray Space Instrumentation for Astronomy XVI, San Diego, California, USA. 2009, 7435: 743503.
[14] [14] BURGER A, GROZA M, CUI Y L, et al. Development of portable CdZnTe spectrometers for remote sensing of signatures from nuclear materials[J]. Physica Status Solidi (c), 2005, 2(5): 1586-1591.
[15] [15] EAMES D A. Pulse deficit correction trigger for planar CdTe based gamma-ray spectrometer[C]//2006 IEEE Nuclear Science Symposium Conference Record. October 29 - November 1, 2006, San Diego, CA, USA. IEEE, 2006: 3778-3780.
[16] [16] PARNHAM K, GLICK J B, SZELES C, et al. Performance improvement of CdZnTe detectors using modified two-terminal electrode geometry[J]. Journal of Crystal Growth, 2000, 214/215: 1152-1154.
[17] [17] BALE D S, SZELES C. Design of high-performance CdZnTe quasi-hemispherical gamma-ray CAP ture plus detectors[C]//Hard X-Ray and Gamma-Ray Detector Physics and Penetrating Radiation Systems Ⅷ. San Diego, California, USA. SPIE, 2006.
[18] [18] IVANOV V, ALEKSEJEVA L, DOROGOV P, et al. CZT quasi-hemispherical detectors with improved spectrometric characteristics[C]//2009 IEEE Nuclear Science Symposium Conference Record (NSS/MIC). October 24 - November 1, 2009, Orlando, FL, USA. IEEE, 2009: 1696-1699.
[19] [19] DOROGOV P, IVANOV V, LOUTCHANSKI A, et al. Improving the performance of quasi-hemispherical CdZnTe detectors using infrared stimulation[J]. IEEE Transactions on Nuclear Science, 2012, 59(5): 2375-2382.
[20] [20] ALEKSEEVA L, DOROGOV P, IVANOV V, et al. Investigation of the influence of light illumination on the characteristics of CdZnTe detectors[C]//2011 IEEE Nuclear Science Symposium Conference Record. October 23-29, 2011, Valencia, Spain. IEEE, 2011: 4562-4566.
[21] [21] NIU L B, YU-LAN L I, ZHANG L, et al. Performance simulation and structure design of Binode CdZnTe gamma-ray detector[J]. Nuclear Science and Techniques, 2014, 025(001): 53-8.
[22] [22] HE Z. Review of the Shockley-Ramo theorem and its application in semiconductor gamma-ray detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2001, 463(1/2): 250-267.
[23] [23] ZAKHARCHENKO A A, RYBKA A V, KUTNY V E, et al. Transport properties and spectrometric performances of CdZnTe gamma-ray detectors[C]//SPIE Optical Engineering + Applications. Proc SPIE 8507, Hard X-Ray, Gamma-Ray, and Neutron Detector Physics XIV, San Diego, California, USA. 2012, 8507: 85071I.
[24] [24] SELLIN P J, DAVIES A W, GKOUMAS S, et al. Ion beam induced charge imaging of charge transport in CdTe and CdZnTe[J]. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions With Materials and Atoms, 2008, 266(8): 1300-1306.
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YU Hui, ZHANG Mengmeng, DU Yuanyuan, XI Shouzhi, ZHA Gangqiang, JIE Wanqi. Analysis on Energy Spectra for CdZnTe Gamma Ray Detector[J]. Journal of Synthetic Crystals, 2021, 50(10): 1883
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Received: Jun. 21, 2021
Accepted: --
Published Online: Dec. 6, 2021
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