Spectroscopic sensing with resonant cavity-enhanced photodetector arrays

被引:1
|
作者
Bainbridge, Andrew [1 ]
Allen, Rebecca E. J. [1 ]
McIndo, Christopher J. [2 ]
Marshall, Andrew R. J. [1 ]
机构
[1] Univ Lancaster, Phys Dept, Lancaster LA1 4YB, England
[2] Rose Cottage, Long Marsh Lane, Lancaster LA1 5QY, England
基金
英国工程与自然科学研究理事会;
关键词
Resonant Enhancement; Photodiode; Spectroscopy;
D O I
10.1117/12.2606398
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
Resonant cavity-enhanced photodiodes (RCE-PD) have previously been studied for the narrow spectral responses that can be achieved. A narrow response is useful for spectral sensing of a specific absorption line without interference from neighbouring absorption lines. We have designed and fabricated an array of photodiodes that each have a slightly shifted resonance wavelength; so combined photocurrent measurements from all the pixels can be used to not only monitor a single absorption line, but also monitor all absorption lines in a region of the infrared simultaneously. The RCE-PD array concept allows for many substances to be identified and measured, offering much more versatility than a measurement from a single-wavelength RCE-PD. The shift in resonance wavelength is created by inducing a thickness gradient in the epitaxial layers across the wafer. Using this technique, a fabricated 2-inch wafer showed a resonance shift between 1.9 mu m and 2.5 mu m. A 1D array of pixels was created with a shift in the resonance of 4nm per pixel. Light from a monochromator was used to test the ability of the array to determine the wavelength of the light. For four closely spaced wavelengths, an accuracy of +/- 2nm was seen.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Theory of resonant cavity-enhanced detection applied to thermal infrared light
    Rosencher, Emmanuel
    Haidar, Riad
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 2007, 43 (7-8) : 572 - 579
  • [32] GaN-based resonant cavity-enhanced UV-photodetectors
    Toyoura, Y
    Kusakabe, K
    Yamada, T
    Bannai, R
    Kikuchi, A
    Kishino, K
    PROCEEDINGS OF THE INTERNATIONAL WORKSHOP ON NITRIDE SEMICONDUCTORS, 2000, 1 : 907 - 910
  • [33] Resonant Cavity-Enhanced Photodiodes for Spectroscopy of C-H Bonds
    Bainbridge, Andrew
    Craig, Adam P.
    Al-Saymari, Furat
    Krier, Anthony
    Marshall, Andrew R. J.
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2021, 218 (17):
  • [34] Si-based resonant-cavity-enhanced photodetector
    Wang, QM
    Li, C
    Cheng, BW
    Yang, QQ
    OPTICAL ENGINEERING, 2001, 40 (07) : 1192 - 1194
  • [35] Analysis on a flattop response resonant cavity enhanced (RCE) photodetector
    Zhong, Yuan
    Huang, Yongqing
    Ren, Xiaomin
    Niu, Zhichuan
    Wu, Ronghan
    Journal of Optical Communications, 2004, 25 (03) : 123 - 126
  • [36] Quasi-resonant cavity enhanced photodetector with a subwavelength grating
    Li, Gongqing
    Duan, Xiaofeng
    Yuan, Weifang
    Huang, Yongqing
    Liu, Kai
    Ren, Xiaomin
    CHINESE OPTICS LETTERS, 2022, 20 (03)
  • [37] Si-based resonant-cavity-enhanced photodetector
    Wang, QM
    Li, C
    Cheng, BW
    Yang, QQ
    OPTICAL INTERCONNECTS FOR TELECOMMUNICATION AND DATA COMMUNICATIONS, 2000, 4225 : 107 - 111
  • [38] Resonant-cavity-enhanced photodetector works at 1.3 μm
    Wallace, J
    LASER FOCUS WORLD, 2000, : 10 - 10
  • [39] Resonant cavity enhanced quantum ring photodetector at m wavelength
    Karimi, Mohammad
    Abedi, Kambiz
    Zavvari, Mahdi
    OPTICAL AND QUANTUM ELECTRONICS, 2013, 45 (12) : 1249 - 1258
  • [40] λ≈3 μm InAs resonant-cavity-enhanced photodetector
    Green, AM
    Gevaux, DG
    Roberts, C
    Stavrinou, PN
    Phillips, CC
    SEMICONDUCTOR SCIENCE AND TECHNOLOGY, 2003, 18 (11) : 964 - 967