• Infrared and Laser Engineering
  • Vol. 52, Issue 3, 20220907 (2023)
Yakui Dong1,2, Junliang Liu1,2,*, Linshan Sun1, Yongfu Li1,2..., Shuzhen Fan1,2, Liang Gao1,2, Zhaojun Liu1,3 and Xian Zhao1,2|Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of Laser & Infrared System (Shandong University), Ministry of Education, Qingdao 266237, China
  • 2Center for Optics Research and Engineering (CORE), Shandong University, Qingdao 266237, China
  • 3School of Information Science and Engineering, Shandong University, Qingdao 266237, China
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    DOI: 10.3788/IRLA20220907 Cite this Article
    Yakui Dong, Junliang Liu, Linshan Sun, Yongfu Li, Shuzhen Fan, Liang Gao, Zhaojun Liu, Xian Zhao. Integrated low-noise near-infrared single-photon detector based on InGaAs NFAD (invited)[J]. Infrared and Laser Engineering, 2023, 52(3): 20220907 Copy Citation Text show less
    References

    [1] Miao Wu, Yu Lu, Tianyi Mao, et al. Time-correlated multi-depth estimation of Single-photon lidar. Infrared and Laser Engineering, 51, 20210885(2022).

    [2] Chao Yu, Jiawei Qiu, Haiyun Xia, et al. Compact and lightweight 1.5 μm lidar with a multi-mode fiber coupling free-running InGaAs/InP single-photon detector. Review of Scientific Instruments, 89, 103106(2018).

    [3] Junliang Liu, Yining Xu, Yakui Dong, et al. Integrated InGaAsP near-infrared single-photon detector with fast active quenching. Chinese Journal of Lasers, 48, 1212002(2021).

    [4] Yanli Shi, Hongxia Zhu, Xueyan Yang, et al. InP-based free running mode single photon avalanche photodiode. Infrared and Laser Engineering, 49, 0103005(2020).

    [5] Chen Liu, Haifeng Ye, Yanli Shi. Advances in near-infrared avalanche diode single-photon detectors. Chip, 1, 100005(2022).

    [6] K E Jensen, P I Hopman, E K Duerr, et al. Afterpulsing in Geiger-mode avalanche photodiodes for 1.06 μm wavelength. Applied Physics Letters, 88, 133503(2006).

    [7] Acerbi Fabio, Della Frera Adriano, Tosi Alberto, et al. Fast active quenching circuit for reducing avalanche charge and afterpulsing in InGaAs/InP single-photon avalanche diode. IEEE Journal of Quantum Electronics, 49, 563-569(2013).

    [8] Shuai Wang, Qin Han, Han Ye, et al. Temperature dependency of InGaAs/InP single photon avalanche diode for 1 550 nm photons. Infrared and Laser Engineering, 50, 20210453(2021).

    [9] Chong Hu, Xiaoguang Zheng, J C Campbell, et al. Characterization of an InGaAs/InP-based single-photon avalanche diode with gated-passive quenching with active reset circuit. Journal of Modern Optics, 58, 201-209(2011).

    [10] Xudong Jiang, M A Itzler, O’Donnell Kevin, et al. Shortwave infrared negative feedback avalanche diodes and solid-state photomultipliers. Optical Engineering, 53, 081908(2014).

    [11] Sanzaro Mirko, Calandri Niccolò, Ruggeri Alessandro, et al. InGaAs/InP SPAD with monolithically integrated zinc-diffused resistor. IEEE Journal of Quantum Electronics, 52, 4500207(2016).

    [12] B Korzh, N Walenta, T Lunghi, et al. Free-running InGaAs single photon detector with 1 dark count per second at 10% efficiency. Applied Physics Letters, 104, 081108(2014).

    [13] Junliang Liu, Yining Xu, Yongfu Li, et al. Exploiting the single-photon detection performance of InGaAs negative-feedback avalanche diode with fast active quenching. Optics Express, 29, 10150-10161(2021).

    Yakui Dong, Junliang Liu, Linshan Sun, Yongfu Li, Shuzhen Fan, Liang Gao, Zhaojun Liu, Xian Zhao. Integrated low-noise near-infrared single-photon detector based on InGaAs NFAD (invited)[J]. Infrared and Laser Engineering, 2023, 52(3): 20220907
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