High-Resolution γ-Ray Spectroscopy in Capacitive Frisch Grid CdZnTeSe Detectors

被引:0
|
作者
Chaudhuri, Sandeep K. [1 ]
Nag, Ritwik [1 ]
Roy, Utpal N. [2 ]
James, Ralph B.
Mandal, Krishna C. [1 ]
机构
[1] Univ South Carolina, Dept Elect Engn, Columbia, SC 29208 USA
[2] Savannah River Natl Lab SRNL, Aiken, SC 29808 USA
关键词
Detectors; Electrons; Crystals; Energy resolution; Cathodes; Zinc; Gamma-rays; Semiconductor; CZTS; charge transport properties; gamma-rays; room-temperature radiation detector; TEMPERATURE; CD1-XZNXTE1-YSEY;
D O I
10.1109/LED.2024.3437230
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The quaternary semiconductor Cd0.9Zn0.1Te1-ySey (y = 0.02-0.03), exhibiting exceptionally high compositional homogeneity and low trap concentrations, has recently emerged as a robust semiconductor crystal for room-temperature detection of gamma-rays. In this letter, we report a high energy resolution of 1.4% achieved for a 3.4 mm x3.4 mm x9.7 mm virtual Frisch grid detector when exposed to 662-keV gamma rays, without any digital correction. The above energy resolution was obtained at a fraction of the bias voltage needed to obtain such high energy resolution in most CZTS detectors. A mobility-lifetime product of 4.42 x 10(-3) cm (2) /V and a drift mobility of 882 cm (2) /V-s for electrons were obtained using a single polarity Hecht plot and the time-of-flight method, respectively. The superior electron transport properties enabled us to calculate the electron-hole pair creation energy (4.47 eV) experimentally for the first time in CZTS. Biparametric correlation studies were performed, which revealed the extraordinary potential of further improvement in the detection performance through digital corrections and can be applied to other wide or ultra-wide bandgap semiconductors.
引用
收藏
页码:1702 / 1705
页数:4
相关论文
共 50 条
  • [1] High-resolution virtual Frisch grid gamma-ray detectors based on as-grown CdZnTeSe with reduced defects
    Roy, Utpal N.
    Camarda, Giuseppe S.
    Cui, Yonggang
    James, Ralph B.
    APPLIED PHYSICS LETTERS, 2019, 114 (23)
  • [2] TlBr Capacitive Frisch Grid Detectors
    Hitomi, Keitaro
    Tada, Tsutomu
    Onodera, Toshiyuki
    Kim, Seong-Yun
    Xu, Yuanlai
    Shoji, Tadayoshi
    Ishii, Keizo
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2013, 60 (02) : 1156 - 1161
  • [3] Optimizing CdZnTeSe Frisch-Grid Nuclear Detector for Gamma-Ray Spectroscopy
    Egarievwe, Stephen U.
    Roy, Utpal N.
    Agbalagba, Ezekiel O.
    Harrison, Benicia A.
    Goree, Carmella A.
    Savage, Emmanuel K.
    James, Ralph B.
    IEEE ACCESS, 2020, 8 : 137530 - 137539
  • [4] A capacitive Frisch grid structure for CdZnTe detectors
    Montémont, G
    Arques, M
    Verger, L
    Rustique, J
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2001, 48 (03) : 278 - 281
  • [5] CdZnTe detectors with parallel capacitive Frisch grid
    Shi Zhu-Bin
    Wang Lin-Jun
    Min Jia-Hua
    Qin Kai-Feng
    Liang Xiao-Yan
    Zhang Ji-Jun
    Huang Jian
    Tang Ke
    Xia Yi-Ben
    JOURNAL OF INFRARED AND MILLIMETER WAVES, 2011, 30 (06) : 514 - 517
  • [6] Reversible capacitive Frisch grid TlBr detectors
    Nogami, Mitsuhiro
    Hitomi, Keitaro
    Onodera, Toshiyuki
    Watanabe, Kenichi
    Ishii, Keizo
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2023, 62 (09)
  • [7] Evaluation of CZT detectors with capacitive Frisch grid structure
    Cirignano, L
    Kim, H
    Shah, K
    Klugerman, M
    Wong, P
    Squillante, M
    Li, LX
    HARD X-RAY AND GAMMA-RAY DETECTOR PHYSICS V, 2004, 5198 : 1 - 8
  • [8] Simulation design of capacitive Frisch grid CdZnTe detectors
    Xia Jun
    Sang Wenbin
    Qian Yongbiao
    Min jiahua
    Teng jianyong
    Liang xiaoyan
    2006 CONFERENCE ON HIGH DENSITY MICROSYSTEM DESIGN AND PACKAGING AND COMPONENT FAILURE ANALYSIS (HDP '06), PROCEEDINGS, 2006, : 317 - +
  • [9] Simulation of the anode structure for capacitive Frisch grid CdZnTe detectors
    MIN Jiahua 1 SHI Zhubin 1
    NuclearScienceandTechniques, 2009, 20 (01) : 46 - 50
  • [10] Design of Capacitive Frisch Grid TlBr Detectors for Radionuclide Identification
    Kargar, A.
    Christian, J.
    Kim, H.
    Cirignano, L.
    Squillante, M.
    Squillante, M. S.
    Weststrate, E.
    Bolotnikov, A.
    Carini, G.
    Dellapenna, A.
    Fried, J.
    Smith, M. B.
    Johnston, E. M.
    Koslowsky, M. R.
    Miller, A. L.
    Shah, K. S.
    2019 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (NSS/MIC), 2019,