Short-Wave Infrared HgCdTe Electron Avalanche Photodiodes for Gated Viewing

被引:1
|
作者
A. Sieck
M. Benecke
D. Eich
R. Oelmaier
J. Wendler
H. Figgemeier
机构
[1] AIM Infrarot-Module GmbH,
来源
Journal of Electronic Materials | 2018年 / 47卷
关键词
SWIR; APD; gain; MCT; HgCdTe; ROIC; gated viewing; active imaging;
D O I
暂无
中图分类号
学科分类号
摘要
Short-wave infrared (SWIR) HgCdTe electron avalanche photodiodes (eAPDs) with different doping profiles have been characterized for use in SWIR gated viewing systems. Gated viewing offers enhanced image contrast in scenes with clutter from the foreground or background. HgCdTe-based eAPDs show exponential gain–voltage characteristics and low excess noise and are, therefore, well suited for active imaging applications. The gain achievable at a fixed reverse voltage varies with the bandgap of the Hg1−xCdxTe detector material. We analyze current–voltage and gain–voltage plots measured on SWIR Hg1−xCdxTe eAPDs with x = 0.45, corresponding to a cutoff wavelength of 2.55 μm at 150 K. The cutoff has been chosen as a trade-off between achievable APD gain and operating temperature for SWIR gated-viewing systems with target distances of about 1000 m. Focal plane arrays with a readout-integrated circuit featuring a fast internal clock have been built and their performance with respect to gated viewing applications has been evaluated on a laboratory demonstrator for short distances. Future plans for a field demonstrator for distances up to 1000 m are described briefly at the end.
引用
收藏
页码:5705 / 5714
页数:9
相关论文
共 50 条
  • [41] Bandwidth characterization and optimization of high-performance mid-wavelength infrared HgCdTe e-avalanche photodiodes
    Zhu, Liqi
    Guo, Huijun
    Zhou, Zhiqi
    Xie, Zhiyang
    Xie, Hao
    Chen, Lu
    Lin, Chun
    Chen, Baile
    INFRARED PHYSICS & TECHNOLOGY, 2023, 131
  • [42] Indium Arsenide Electron Avalanche Photodiodes for Femtowatt Level Infrared Detection
    Blain, T.
    Basta, G.
    Tan, C. H.
    Ng, J. S.
    OPTICAL SENSING AND DETECTION VIII, 2024, 12999
  • [43] Analytical modeling and numerical simulation of the short-wave infrared electron-injection detectors
    Movassaghi, Yashar
    Fathipour, Vala
    Fathipour, Morteza
    Mohseni, Hooman
    APPLIED PHYSICS LETTERS, 2016, 108 (12)
  • [44] Research on high gain-bandwidth product mid-wavelength infrared HgCdTe avalanche photodiodes
    Xie, Hao
    Guo, Huijun
    Zhu, Liqi
    Yang, Liao
    Shen, Chuan
    Chen, Baile
    Chen, Lu
    He, Li
    EARTH AND SPACE: FROM INFRARED TO TERAHERTZ, ESIT 2022, 2023, 12505
  • [45] Cryogenic optical mounting for short-wave infrared spectrometers
    Grant, J.
    Wood, T.
    Bhatti, I.
    Canas, A.
    Reddick, P.
    van Wyk, P.
    Bharadia, S.
    Storey, T.
    Potterton, T.
    Rits, W.
    Meijer, H.
    ADVANCES IN OPTICAL AND MECHANICAL TECHNOLOGIES FOR TELESCOPES AND INSTRUMENTATION, 2014, 9151
  • [46] Material Selection for Color Correction in the Short-Wave Infrared
    Shepard, R. Hamilton, III
    Sparrold, Scott W.
    CURRENT DEVELOPMENTS IN LENS DESIGN AND OPTICAL ENGINEERING IX, 2008, 7060
  • [47] Evapotranspiration estimation using short-wave infrared bands
    Girolimetto, D.
    Venturini, V.
    REVISTA DE TELEDETECCION, 2013, (40): : 41 - 50
  • [48] Review on short-wavelength infrared laser gated-viewing at Fraunhofer IOSB
    Goehler, Benjamin
    Lutzmann, Peter
    OPTICAL ENGINEERING, 2017, 56 (03)
  • [49] 1/f noise in HgCdTe infrared gated photodiodes - art. no. 65420E
    Westerhout, R. J.
    Musca, C. A.
    Antoszewski, J.
    Dell, J. M.
    Faraone, L.
    Infrared Technology and Applications XXXIII, 2007, 6542 : E5420 - E5420
  • [50] Suppressed Concentration Quenching Brightens Short-Wave Infrared Emitters
    Xiao, Wenge
    Basore, Endale T.
    Zheng, Guojun
    Liu, Xiaofeng
    Xu, Beibei
    Qiu, Jianrong
    ADVANCED MATERIALS, 2023, 35 (41)