Volume 49 Issue 1
Jan.  2020
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Ding Ruijun, Yang Jianrong, He Li, Hu Xiaoning, Chen Lu, Lin Chun, Liao Qinjun, Ye Zhenhua, Chen Honglei, Wei Yanfeng. Development of technologies for HgCdTe IRFPA[J]. Infrared and Laser Engineering, 2020, 49(1): 0103010-0103010(7). doi: 10.3788/IRLA202049.0103010
Citation: Ding Ruijun, Yang Jianrong, He Li, Hu Xiaoning, Chen Lu, Lin Chun, Liao Qinjun, Ye Zhenhua, Chen Honglei, Wei Yanfeng. Development of technologies for HgCdTe IRFPA[J]. Infrared and Laser Engineering, 2020, 49(1): 0103010-0103010(7). doi: 10.3788/IRLA202049.0103010

Development of technologies for HgCdTe IRFPA

doi: 10.3788/IRLA202049.0103010
  • Received Date: 2019-12-02
  • Rev Recd Date: 2019-12-20
  • Publish Date: 2020-01-28
  • The applications of the second HgCdTe Infrared Focal Plane Arrays(IRFPA) have exploded in the past 10 years, meanwhile the third IRFPA has developed rapidly. This article makes a brief retrospect in development of HgCdTe IRFPA detector, combines with applications of HgCdTe IRFPA detector, summarizes the research works and the engineering applications of HgCdTe IRFPA detector and looks forward to the further development of HgCdTe IRFPA detector.
  • [1] James Bangs, Mark Langell, Madhu Reddy, et al. Large format high operability SWIR and MWIR focal plane array performance and capabilities[C]//SPIE, 2011, 8012:10.1117/12.887417.
    [2] Figgemeier H, Hannaa S, Eicha D, et al. State of the Art of AIM LWIR and VLWIR MCT 2D focal plane detector arrays for higher operating temperatures[C]//SPIE, 2016, 9819(2009):10.1117/12.2223001.
    [3] Smtth E P G, Venzor G M, Gallagher A M, et al. Large-format HgCdTe dual-band long-wavelength infrared focal-plane arrays[J]. Journal of Electronic Materials, 2011, 40(8):1630.
    [4] Bratt P R, Johnson S M, Rhiger D R, et al. Historical perspectives on HgCdTe material and device development at raytheon vision systems[C]//SPIE, 2009, 7298:10.1117/12.822899.
    [5] Johan Rothman, Eric de Borniol, Philippe Ballet. HgCdTe APD- Focal Plane Array performance at DEFIR[C]//SPIE, 2009, 7298:10.1117/12.819320.
    [6] Laurent Rubaldo, Alexandre Brunner. State of the art HOT performances for Sofradir II-VI extrinsic technologies[C]//SPIE, 2016, 9819:10.1117/12.2229308.
    [7] Breiter R, Figgemeier H, Lutz H. Improved MCT LWIR modules for demanding imaging applications[C]//SPIE, 2015, 9451:10.1117/12.2178538.
    [8] John Caulfielda, Jon Curzan. Small pixel infrared sensor technology[C]//SPIE, 2017, 10177:10.1117/12.2264824.
    [9] Tennant W E, Gulbransen D J, Roll A, et al. Small-pitch HgCdTe photodetectors[J]. Journal of Electronic Materials, 2014, 43(8):3041.
    [10] Gravrand O, Destefanis G, Bisotto S, et al. Issues in HgCdTe research and expected progress in infrared detector fabrication[J]. Journal of Electronic Materials, 2013, 42(11):3349-3358.
    [11] Xu Chao, Sheng Fengfeng, Yang Jianrong. Annealing of CdZnTe materials to reduce inclusion defects[J]. Journal of Crystal Growth, 2016, 451(1):126-131.
    [12] Sun Quanzhi, Yang Jianrong, Wei Yanfeng, et al. Characteristics of Au migration and concentration distributions in Au-doped HgCdTe LPE materials[J]. Journal of Electronic Materials, 2015, 44(8):2773-2778.
    [13] He L, Fu Xiangliang, Wei Qingzhu, et al. MBE HgCdTe on alternative substrates for FPA application[J]. J Electronic Materials, 2008, 27(9):1189-1199.
    [14] Hu Xiaoning, Huang Aibo, Liao Qinjun, et al. Large-format high SNR SWIR HgCdTe/Si FPA with multiple-choice gain for hyperspectral detection[C]//SPIE, 2017, 10213:10.1117/12.2262912,
    [15] Gravrand O, Chorier Ph. Status of very long infrared wave focal plane array, development at DEFIR[C]//SPIE, 2009, 7298:10.1117/12.819319.
    [16] Yann Reibel, Taalat R, Brunner A, et al. Infrared SWAP detectors:pushing the limits[C]//SPIE, 2015, 9451:10.1117/12.2179212.
    [17] Lutz H, Breitera R, Eich D, et al. Small pixel pitch MCT IR-modules[C]//SPIE, 2016, 9819:10.1117/12.2223841.
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Development of technologies for HgCdTe IRFPA

doi: 10.3788/IRLA202049.0103010
  • Key Laboratory of Infrared Imaging Materials and Detectors, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China

Abstract: The applications of the second HgCdTe Infrared Focal Plane Arrays(IRFPA) have exploded in the past 10 years, meanwhile the third IRFPA has developed rapidly. This article makes a brief retrospect in development of HgCdTe IRFPA detector, combines with applications of HgCdTe IRFPA detector, summarizes the research works and the engineering applications of HgCdTe IRFPA detector and looks forward to the further development of HgCdTe IRFPA detector.

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