Space qualification issues in acousto-optic and electro-optic devices

被引:4
|
作者
Prasad, Narasimha S. [1 ]
Taylor, Edward W. [2 ]
Trivedi, Sudhir [3 ]
Kutcher, Sue [3 ]
Soos, Jolanta [3 ]
机构
[1] NASA, Langley Res Ctr, Laser Remote Sensing Branch, Hampton, VA 23665 USA
[2] Int Photon Consultants, Albuquerque, NM 87122 USA
[3] Brimrose Corp, Baltimore, MD 21152 USA
关键词
space qualification; acousto-optic devices; electro-optic devices; acousto-optics tunable filter; electro-optic modulator; radiation hardening;
D O I
10.1117/12.737086
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Satellite and space-based applications of photonic devices and systems require operational reliability in the harsh environment of space for extended periods of time. This in turn requires every component of the systems and their packaging to meet space qualifications. Acousto- and electro-optical devices form the major components of many current space based optical systems, which is the focus of this paper. The major space qualification issues are related to: mechanical stability, thermal effects and operation of the devices in the naturally occurring space radiation environment. This paper will discuss acousto- and electro-optic materials and devices with respect to their stability against mechanical vibrations, thermal cycling in operating and non-operating conditions and device responses to space ionizing and displacement radiation effects. Selection of suitable materials and packaging to meet space qualification criteria will also be discussed. Finally, a general roadmap for production and testing of acousto- and electro-optic devices will be discussed.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Overlap integral in integrated acousto-optic devices
    Fan, Guofang
    Ning, Jiping
    Shang, Lianju
    Han, Qun
    Chen, Zhiquan
    OPTICAL ENGINEERING, 2006, 45 (06)
  • [32] Acousto-Optic Devices Based on Multibeam Diffraction
    Antonov, S. N.
    Rezvov, Yu G.
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2020, 63 (06) : 835 - 841
  • [33] Acousto-optic interaction in Raman-Nath acousto-optic diffraction
    Weng Cuncheng
    He Youwu
    EUROPEAN PHYSICAL JOURNAL D, 2019, 73 (01):
  • [34] Acousto-optic diffraction with allowance for the influence of the acousto-optic cell boundaries
    Antonov, S. N.
    Vainer, A. V.
    Proklov, V. V.
    Rezvov, Yu. G.
    TECHNICAL PHYSICS, 2012, 57 (06) : 814 - 818
  • [35] Space qualification issues in acousto optic tunable filter (AOTF) based spectrometers
    Trivedi, Sudhir
    Rosemeier, Jolanta
    Jin, Feng
    Kutcher, Susan
    Chen, Ruijin
    SOLID STATE LASERS XV: TECHNOLOGY AND DEVICES, 2006, 6100
  • [36] Nonreciprocity of acousto-optic interaction in collinear tunable acousto-optic filters
    Dobrolenskiy, Yury S.
    Voloshinov, Vitaly B.
    Zyuryukin, Yury A.
    Djakonov, Evgeny A.
    APPLIED OPTICS, 2009, 48 (07) : C67 - C73
  • [37] Acousto-optic diffraction with allowance for the influence of the acousto-optic cell boundaries
    S. N. Antonov
    A. V. Vainer
    V. V. Proklov
    Yu. G. Rezvov
    Technical Physics, 2012, 57 : 814 - 818
  • [38] Analysis of frequency-shifting loops in integer and fractional Talbot conditions: electro-optic versus acousto-optic modulation
    Yang, Hongzhi
    Brunel, Marc
    Vallet, Marc
    Zhang, Haiyang
    Zhao, Changming
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2020, 37 (11) : 3162 - 3169
  • [39] First acousto-optic spectrum analyser in space
    Bagshaw, J
    GEC REVIEW, 1999, 14 (02): : 171 - 171
  • [40] Space-integrating acousto-optic correlator
    Beijing Univ of Aeronautics and, Astronautics, Beijing, China
    Beijing Hangkong Hangtian Daxue Xuebao, 1 (11-15):