MCT heterostructures for higher operating temperature infrared detectors designed in Poland

被引:3
|
作者
Madejczyk, Pawel [1 ]
Gawron, Waldemar [1 ,2 ]
Sobieski, Jan [2 ]
Martyniuk, Piotr [1 ]
Rutkowski, Jaroslaw [1 ]
机构
[1] Mil Univ Technol, Inst Appl Phys, 2 Gen Kaliskiego St, PL-00908 Warsaw, Poland
[2] Vigo Photon SA, 129-133 Poznanska St, PL-05850 Ozarow Mazowiecki, Poland
关键词
MCT; HgCdTe; metal organic chemical vapour deposition; infrared detectors; higher operating temperature; HGCDTE; GROWTH;
D O I
10.24425/opelre.2023.144551
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents examples of infrared detectors with mercury cadmium telluride elaborated at the Institute of Applied Physics, Military University of Technology and VIGO Photonics S.A. Fully doped HgCdTe epilayers were grown with the metal organic chemical vapour deposition technique which provides a wide range of material composition covering the entire infrared range from 1.5 mu m to 14 mu m. Fundamental issues concerning the design of individual areas of the heterostructure including: the absorber, contacts, and transient layers with respect to their thickness, doping and composition were discussed. An example of determining the gain is also given pointing to the potential application of the obtained devices in avalanche photodiode detectors that can amplify weak optical signals. Selected examples of the analysis of current-voltage and spectral characteristics are shown. Multiple detectors based on a connection in series of small individual structures are also presented as a solution to overcome inherent problems of low resistance of LWIR photodiodes. The HgCdTe detectors were compared with detectors from III-V materials. The detectors based on InAs/InAsSb superlattice materials achieve very comparable parameters and, in some respects, they are even superior to those with mercury cadmium telluride.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Higher Operating Temperature IR Detectors of the MOCVD Grown HgCdTe Heterostructures
    Madejczyk, P.
    Gawron, W.
    Keblowski, A.
    Mlynarczyk, K.
    Stepien, D.
    Martyniuk, P.
    Rogalski, A.
    Rutkowski, J.
    Piotrowski, J.
    JOURNAL OF ELECTRONIC MATERIALS, 2020, 49 (11) : 6908 - 6917
  • [2] Higher Operating Temperature IR Detectors of the MOCVD Grown HgCdTe Heterostructures
    P. Madejczyk
    W. Gawron
    A. Kębłowski
    K. Mlynarczyk
    D. Stępień
    P. Martyniuk
    A. Rogalski
    J. Rutkowski
    J. Piotrowski
    Journal of Electronic Materials, 2020, 49 : 6908 - 6917
  • [3] Infrared negative luminescent devices and higher operating temperature detectors
    Nash, GR
    Gordon, NT
    Hall, DJ
    Little, JC
    Masterton, G
    Hails, JE
    Giess, J
    Haworth, L
    Emeny, MT
    Ashley, T
    DETECTORS AND ASSOCIATED SIGNAL PROCESSING, 2004, 5251 : 56 - 64
  • [4] Infrared negative luminescent devices and higher operating temperature detectors
    Nash, GR
    Gordon, NT
    Hall, DJ
    Ashby, MK
    Little, JC
    Masterton, G
    Hails, JE
    Gless, J
    Haworth, L
    Emeny, MT
    Ashley, T
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2004, 20 (3-4): : 540 - 547
  • [5] HOTEYE: A novel thermal camera using higher operating temperature infrared detectors
    Bowen, GJ
    Blenkinsop, ID
    Catchpole, R
    Gordon, NT
    Harper, MAC
    Haynes, PC
    Hipwood, L
    Hollier, CJ
    Jones, C
    Lees, DJ
    Maxey, CD
    Milner, D
    Ordish, M
    Philips, TS
    Price, RW
    Shaw, C
    Southern, P
    Infrared Technology and Applications XXXI, Pts 1 and 2, 2005, 5783 : 392 - 400
  • [6] Reliability Studies of High-Operating Temperature MCT Photoconductor Detectors
    Wang, Wei
    Xu, Jintong
    Zhang, Yan
    Li, Xiangyang
    5TH INTERNATIONAL SYMPOSIUM ON ADVANCED OPTICAL MANUFACTURING AND TESTING TECHNOLOGIES: OPTOELECTRONIC MATERIALS AND DEVICES FOR DETECTOR, IMAGER, DISPLAY, AND ENERGY CONVERSION TECHNOLOGY, 2010, 7658
  • [7] High operating temperature plasmonic infrared detectors
    Nordin, L.
    Muhowski, A. J.
    Wasserman, D.
    APPLIED PHYSICS LETTERS, 2022, 120 (10)
  • [8] High Operating Temperature InAlSb Infrared Detectors
    Li, Mo
    Chen, Gang
    Li, Hao
    Zhang, Zhaofan
    Peng, Pan
    Lv, Yanqiu
    INFRARED TECHNOLOGY AND APPLICATIONS, AND ROBOT SENSING AND ADVANCED CONTROL, 2016, 10157
  • [9] Parameters Selection Study of High-Operating Temperature MCT Photoconductor Detectors
    Wang Wei
    Xu jingtong
    Jiang Peilu
    Xu Pengxiao
    Li Xiang-yang
    MIPPR 2011: MULTISPECTRAL IMAGE ACQUISITION, PROCESSING, AND ANALYSIS, 2011, 8002
  • [10] Enhanced Photon Absorption in Subwavelength Mercury Cadmium Telluride Layer for Infrared Detectors Operating at Higher Temperature
    Sojib, Md.
    Sayeed, R.
    Avrutin, V.
    Ozgur, U.
    Dhar, N. K.
    2023 IEEE PHOTONICS CONFERENCE, IPC, 2023,