• Infrared and Laser Engineering
  • Vol. 52, Issue 3, 20230036 (2023)
Huijun Guo1, Lu Chen1,*, Liao Yang1, Chuan Shen1..., Hao Xie1, Chun Lin1,2, Ruijun Ding1,2 and Li He1,2|Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of Infrared Imaging Materials and Detectors, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083, China
  • 2School of Information Science and Technology, ShanghaiTech University, Shanghai 201210, China
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    DOI: 10.3788/IRLA20230036 Cite this Article
    Huijun Guo, Lu Chen, Liao Yang, Chuan Shen, Hao Xie, Chun Lin, Ruijun Ding, Li He. Linear-mode HgCdTe avalanche photodiode detectors for photon-counting applications (invited)[J]. Infrared and Laser Engineering, 2023, 52(3): 20230036 Copy Citation Text show less
    References

    [2] Denvir D J, Conroy E. Electron multiplying CCD technology: The new ICCD [C]Proceedings of SPIE, 2002, 4796: 164174.

    [3] Stewart A G, GreeneO′Sullivan E, Herbert D J, et al. Study of the properties of new SPM detects [C]Proceedings of SPIE, 2006, 6119: 61190A.

    [4] John Degnan, David Wells, Roman Machan, et al. Second generation airbne 3D imaging lidars based on photon counting [C]Proceedings of SPIE, 2007, 6771: 67710N.

    [5] Peng Ge, Jingjing Guo, Cong Chen, et al. Photon-counting 3D imaging based on Geiger-mode APD array. Infrared and Laser Engineering, 49, 0305007(2022).

    [6] Zhu Shi, Qian Dai, Haizhi Song, et al. Low dark count rate InGaAsP/InP SPAD. Infrared and Laser Engineering, 46, 1220001(2017).

    [7] Beck J D, Scritchfield R, Mitra P, et al. Linear mode photon counting with the noiseless gain HgCdTe eAPD [C]Proceedings of the SPIE, 2011, 8033: 80330N.

    [8] G Leveque. Ionization energies in HgxCd1-xTe avalanche photodiodes. Semiconductor Science and Technology, 8, 1317-1323(1993).

    [9] S Derelle, S Bernhardt, R Haidar, et al. Experimental performances and Monte Carlo modelling of LWIR HgCdTe avalanche photodiodes. Journal of Electronic Materials, 38, 1628-1636(2009).

    [10] Rothman J, de Bniol E, Gravr O, et al. HgCdTe APDfocal plane array development at DEFIR [C]Proceedings of SPIE, 2010, 7834: 78340O.

    [11] Jack M, Wehner J , Edwards J, et al. HgCdTe APDbased LinearMode photon counting components LADAR receivers [C]Proceedings of SPIE, 2011, 8033: 80330M.

    [13] Asbrocka J, Baileya S, Baleya D, et al. UltraHigh sensitivity APD based 3 D LADAR senss: linear mode photon counting LADAR camera f the ultrasensitive detect program [C]Proceedings of the SPIE, 2008, 6940: 69402O.

    [14] Lyon T J De, B Baumgratz, G Chapman, et al. MBE growth of HgCdTe avalanche photodiode structures for low-noise 1.55 μm photodetection. Journal of Crystal Growth, 201-202, 980-984(1999).

    [15] Bryan M L, Chapman G, Hall D N B, et al. Investigation of linearmode, photoncounting HgCdTe APDs f astronomical observations [C]Proceedings of SPIE, 2012, 8453: 84532F.

    [16] Michael Jack, Gege Chapman, John Edwards, et al. Advances in LADAR components subsystems at Raytheon [C]Proceedings of SPIE, 2012, 8353: 83532F.

    [17] J Beck, C Wan, M Kinch, et al. The HgCdTe electron avalanche photodiode. Journal of Electronic Materials, 35, 1166-1173(2006).

    [18] A Singh, V Srivastav, R Pal. HgCdTe avalanche photodiodes: A review. Optics & Laser Technology, 43, 1358-1370(2011).

    [19] Sullivan III William, Beck Jeffrey, Scritchfield Richard, et al. Linear-Mode HgCdTe avalanche photodiodes for photon-counting applications. Journal of Electronic Materials, 44, 3092-3101(2015).

    [20] Sun Xiaoli, Abshirea James, Krainaka Michael, et al. Single photon HgCdTe avalanche photodiode integrated detect cooler assemblies f space lidar applications [C]Proceedings of SPIE, 2018, 10659: 106590C.

    [21] A P Duke, J D Beck, III W Sullivan, et al. Recent advancements in HgCdTe APDs for space applications. Journal of Electronic Materials, 51, 6803-6814(2022).

    [22] Krainak M A, Yanga G, Sun X, et al. Novel photoncounting detects f freespace communication [C]Proceedings of SPIE, 2016, 9739: 97390T.

    [23] Gautier Vojetta, Fabrice Guellec, Lydie Mathieu, et al. Linear photoncounting with HgCdTe APDs [C]Proceedings of SPIE, 2012, 8375: 83750Y.

    [24] Johan Rothmana, Eric de Bniol, Sylvette Bisotto, et al. HgCdTe APDfocal plane array development at DEFIR f low flux photoncounting applications [C]Quantum of Quasars Wkshop, December 24, 2009, Grenoble, France, 2009: 114.

    [25] Rothman J, Lasfargues G, Abergel J. HgCdTe APDs f free space optical communications [C]Proceedings of SPIE, 2015, 9647: 96470N.

    [26] Johan Rothman, Pierre Bleuet, Luc re, et al. HgCdTe APDs f free space optical communications [C]Proceedings of SPIE, 2018, 10524: 1052411.

    [27] Rothman J, De Bniol E, Pes S, et al. HgCdTe APDs detect developments f high speed, low photon number large dynamic range photodetection [C]Proceedings of SPIE, 2021, 11852: 118520F.

    [28] Pes S, Rothman J, Bleuet P, et al. Reaching GHz single photon detection rates with HgCdTe avalanche photodiodes detects [C]Proceedings of SPIE, 2021, 11852: 118525S.

    [29] Dani Atkinson, Donald Hall, Sean Goebel, et al. Observaty deployment acterization of SAPHIRA HgCdTe APD arrays[C]Proceedings of SPIE, 2018, 10709: 107091H.

    [30] Rothman Johan. Physics and limitations of HgCdTe APDs: A Review. Journal of Electronic Materials, 47, 5657-5665(2018).

    [31] Atkinson Dani, Hall Donald, Jacobson Shane, et al. Photon-counting properties of SAPHIRA APD arrays. The Astronomical Journal, 155, 220(2018).

    [32] Timothée Greffe, Philippe Feautrier, JeanLuc Gach, et al. CRED One: The infrared camera using the Saphira eAPD detect [C]Proceedings of SPIE, 2016, 9907: 99072E.

    [33] Anugu N, Le Bouquinb JB, Monnier J D, et al. MIRCXA: sensitivity improvements with an ultralow noise SAPHIRA detect [C]Proceedings of SPIE, 2018, 10701: 1070124.

    [34] Guo Huijun, Cheng Yushun, Chen Lu, et al. The perfmance of Wave Infrared HgCdTe eAvalanche photodiodes at SITP [C]Proceedings of SPIE, 2019, 11170: 111702M.

    [35] Guo Huijun, Chen Lu, Yang Liao, et al. The latest developments of HgCdTe eAPDs at SITP [C]Proceedings of the SPIE, 2020, 11717: 1171736.

    [36] Guo Huijun, Yang Liao, Shen Chuan, et al. Developments acterization of HgCdTe eAPDs at SITP [C]Proceedings of SPIE, 2023, 12505: 125050C.

    [37] Xiongjun Li, Fuzhong Han, Lihua Li, et al. Gain characteristics of MW HgCdTe avalanche photodiodes. Journal of Infrared and Millimeter Waves, 38, 175-181(2019).

    [38] Xiongjun Li, Yingxu Zhang, Xiao Chen, et al. Study on HgCdTe APD focal plane technology. Journal of Infrared and Millimeter Waves, 41, 965-971(2022).

    Huijun Guo, Lu Chen, Liao Yang, Chuan Shen, Hao Xie, Chun Lin, Ruijun Ding, Li He. Linear-mode HgCdTe avalanche photodiode detectors for photon-counting applications (invited)[J]. Infrared and Laser Engineering, 2023, 52(3): 20230036
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