Design of an Auger-Suppressed Unipolar HgCdTe NBνN Photodetector

被引:0
|
作者
Anne M. Itsuno
Jamie D. Phillips
Silviu Velicu
机构
[1] University of Michigan,Department of Electrical Engineering and Computer Science
[2] EPIR Technologies,undefined
来源
关键词
HgCdTe; NBνN; hybrid; Auger suppression; infrared photodetector; unipolar; nBn;
D O I
暂无
中图分类号
学科分类号
摘要
A unipolar mercury cadmium telluride (HgCdTe) NBνN infrared (IR) device architecture is analyzed by physics-based numerical device simulations. The device structure is predicted to suppress Shockley–Read–Hall (SRH) and Auger generation–recombination (G–R) processes, while also providing a simplified fabrication process by eliminating p-type doping requirements. The performance characteristics of mid- and long-wavelength infrared (MWIR: λc = 5 μm; LWIR: λc = 12 μm) NBνN devices are calculated and compared with those of nBn and double-layer planar heterostructure (DLPH) devices. Theoretical dark current density (Jdark) values of the MWIR and LWIR NBνN devices are lower by an order of magnitude or more for temperatures between 50 K and 225 K. Calculated peak detectivity (D*) values of 6.01 × 1014 cm Hz0.5/W to 2.36 × 1010 cm Hz0.5/W for temperatures from 95 K to 225 K, and 2.37 × 1014 cm Hz0.5/W to 2.27 × 1011 cm Hz0.5/W for temperatures from 50 K to 95 K are observed for MWIR and LWIR NBνN structures, respectively. A component of the NBνN structure, embodied in a unipolar MWIR nBn device, is also fabricated to experimentally demonstrate selective carrier extraction.
引用
收藏
页码:2886 / 2892
页数:6
相关论文
共 50 条
  • [21] Interface Influence on the Long-Wave Auger Suppressed Multilayer N+πP+p+n+ HgCdTe HOT Detector Performance
    Martyniuk, Piotr
    Kopytko, Malgorzata
    Keblowski, Artur
    Grodecki, Kacper
    Gawron, Waldemar
    Gomulka, Emilia
    IEEE SENSORS JOURNAL, 2017, 17 (03) : 674 - 678
  • [22] Status of long-wave Auger suppressed HgCdTe detectors operating > 200 K
    Martyniuk, P.
    Gawron, W.
    Stepien, D.
    Pawluczyk, J.
    Keblowski, A.
    Madejczyk, P.
    Kopytko, M.
    Kozniewski, A.
    OPTO-ELECTRONICS REVIEW, 2015, 23 (04) : 278 - 286
  • [23] Modeling and simulation of HgCdTe based p+-n-n+ LWIR photodetector
    Saxena, P. K.
    INFRARED PHYSICS & TECHNOLOGY, 2011, 54 (01) : 25 - 33
  • [24] Theoretical utmost performance of the (100) long-wave HgCdTe Auger suppressed photodetectors grown on GaAs
    Martyniuk, P.
    Gawron, W.
    Madejczyk, P.
    Rogalski, A.
    INFRARED PHYSICS & TECHNOLOGY, 2017, 84 : 58 - 62
  • [25] Unipolar barrier structures based on n-HgCdTe with superlattices as a barrier [Review]
    Voitsekhovskii, Alexander V.
    Dzyadukh, Stanislav M.
    Gorn, Dmitry I.
    Mikhailov, Nikolay N.
    Dvoretsky, Sergey A.
    Sidorov, Georgy Yu.
    Yakushev, Maxim V.
    JOURNAL OF OPTICAL TECHNOLOGY, 2024, 91 (02) : 67 - 76
  • [26] Cavity enhancement of Auger-suppressed detectors:: A way to background-limited room-temperature operation in 3-14-μm range
    Jaksic, Z
    Djuric, Z
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2004, 10 (04) : 771 - 776
  • [27] Design and Performance Study of Hybrid Graphene/HgCdTe Mid-Infrared Photodetector
    You, Congya
    Deng, Wenjie
    Liu, Ming
    Zhou, Peng
    An, Boxing
    Wang, Bo
    Yu, Songlin
    Zhang, Yongzhe
    IEEE SENSORS JOURNAL, 2021, 21 (23) : 26708 - 26715
  • [28] Analysis of the Auger Recombination Rate in P+N-n-N-N HgCdTe Detectors for HOT Applications
    Schuster, J.
    Tennant, W. E.
    Bellotti, E.
    Wijewarnasuriya, P. S.
    INFRARED TECHNOLOGY AND APPLICATIONS XLII, 2016, 9819
  • [29] Depletion Engineered Heteroj unction p plus -n HgCdTe Infrared Photodetector Structures
    Livanelioglu, Can
    Ozer, Yigit
    Kocaman, Serdar
    2018 IEEE PHOTONICS CONFERENCE (IPC), 2018,
  • [30] Atomistic Design of CdSe/CdS Core-Shell Quantum Dots with Suppressed Auger Recombination
    Jain, Ankit
    Voznyy, Oleksandr
    Hoogland, Sjoerd
    Korkusinski, Marek
    Hawrylak, Pawel
    Sargent, Edward H.
    NANO LETTERS, 2016, 16 (10) : 6491 - 6496