• Journal of Semiconductors
  • Vol. 40, Issue 12, 122902 (2019)
Chaohui Li1, Jun Deng1, Weiye Sun1, Leilei He1, Jianjun Li1, Jun Han1, and Yanli Shi2
Author Affiliations
  • 1Key Laboratory of Optoelectronics Technology, Faculty of Information Technology, Beijing University of Technology, Beijing 100124, China
  • 2School of Physics & Astronomy, Yunnan University, Kunming 650091, China
  • show less
    DOI: 10.1088/1674-4926/40/12/122902 Cite this Article
    Chaohui Li, Jun Deng, Weiye Sun, Leilei He, Jianjun Li, Jun Han, Yanli Shi. Improvement of tunnel compensated quantum well infrared detector[J]. Journal of Semiconductors, 2019, 40(12): 122902 Copy Citation Text show less
    References

    [1] A Rogalski. Recent progress in infrared detector technologies. Infrared Phys Technol, 54, 136(2011).

    [2] H Kataria, C Asplund, A Lindberg et al. Novel high-resolution VGA QWIP detector. Proc SPIE, 10177(2017).

    [3] K Roodenko, K K Choi, K P Clark et al. Control over the optical and electronic performance of GaAs/AlGaAs QWIPs grown by production MBE. Infrared Phys Technol, 84, 33(2017).

    [4] M Jhabvala, K K Choi, C Monroy et al. Development of a 1 K × 1 K 8–12 μm QWIP array. Infrared Phys Technol, 50, 234(2007).

    [5] Y Kaya, A Ravikumar, G P Chen et al. Two-band ZnCdSe/ZnCdMgSe quantum well infrared photodetector. AIP Adv, 8, 075105(2018).

    [6] Z F Li, Y L Jing, Y W Zhou. Multi-band integrated quantum well infrared photodetectors. International Conference on Infrared Millimeter and Terahertz Waves(2018).

    [7] Y Wu, H M Liu, P Z Li. Dual-band quantum well infrared photodetector with metallic structure. Proc SPIE, 10697(2018).

    [8] A Rogalski. Infrared detectors: an overview. Infrared Phys Technol, 43, 187(2002).

    [9] T L Haran, J C James, S E Lane et al. Quantum efficiency and spatial noise tradeoffs for III–V focal plane arrays. Infrared Phys Technol, 97, 309(2019).

    [10] S U Eker, M Hostut, Y Ergun et al. A new approach to quantum well infrared photodetectors: Staircase-like quantum well and barriers. Infrared Phys Technol, 48, 101(2006).

    [11] K K Choi, S C Allen, J G Sun et al. Small pitch resonator-QWIP detectors and arrays. Infrared Phys Technol, 94, 118(2018).

    [12] E A Jr DeCuir, K K Choi, J Sun et al. Progress in resonator quantum well infrared photodetector (R-QWIP) focal plane arrays. Infrared Phys Technol, 70, 138(2015).

    [13] G X Su, L Liu, W B Zang et al. Highly efficient dielectric optical incoupler for quantum well infrared photodetectors. IEEE Photonics Technol Lett, 30, 1167(2018).

    [14] J Deng, G D Shen, P Lian et al. Optoelectronic transport mechanism from subband infrared absorption and tunneling regeneration. Curr Appl Phys, 2, 373(2002).

    [15] A Billaha, M K Das. Influence of doping on the performance of GaAs/AlGaAs QWIP for long wavelength applications. Opto−Electron Rev, 24, 25(2016).

    [16] J Deng. Study on novel GaAs/AlGaAs multi-quantum wells infrared photodetecting mechanism and MOCVD epitaxy technology. Beijing: Beijing University of Technology, 79(2005).

    Chaohui Li, Jun Deng, Weiye Sun, Leilei He, Jianjun Li, Jun Han, Yanli Shi. Improvement of tunnel compensated quantum well infrared detector[J]. Journal of Semiconductors, 2019, 40(12): 122902
    Download Citation