AEROSPACE SHANGHAI, Volume. 42, Issue 4, 129(2025)

Evaluation of Space Environmental Adaptability for Optical Modules in Laser Space Communication

Lindong MA, Zhengdong SONG, Yuan LIU, Bo WANG, and Zebin KONG
Author Affiliations
  • Shanghai Institute of Aerospace Technical Foundation,Shanghai201109,China
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    References(8)

    [8] M KARPPINEN, A TANSKANEN, J OLLILA et al. Fiber-optic transceivers for high-speed intra-satellite links. IEEE Avionics,Fiber-Optics and Photonics Digest CD.Cocoa Beach(2012).

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    [12] C CHALFANT, F ORLANDO, P PARKERSON. Photonic packaging for space applications. Proc Spie, 4732, 69-78(2002).

    [16] A H PAXTON, R F CARSON. Damage from proton irradiation of vertical-cavity surface-emitting lasers. IEEE Transactions on Nuclearence, 44, 1893-1897(1997).

    [17] A H JOHNSTON, T F MIYAHIRA, B G RAX. Proton damage in advanced laser diodes. IEEE Transactions on Nuclear Science, 48, 1764-1772(2001).

    [22] Y LIU, S H ZHAO, S S YANG et al. Markov process based reliability model for laser diodes in space radiation environment. Microelectronics Reliability, 54, 2735-2739(2014).

    [27] M Y LI, J N DUAN, Z Y JIN et al. Enhanced radiation hardness of InAs/GaAs Quantum dot lasers for space communication. Laser Photonics Reviews, 19(2025).

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    Lindong MA, Zhengdong SONG, Yuan LIU, Bo WANG, Zebin KONG. Evaluation of Space Environmental Adaptability for Optical Modules in Laser Space Communication[J]. AEROSPACE SHANGHAI, 2025, 42(4): 129

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    Paper Information

    Category: Components and Devices Failure Physics

    Received: May. 30, 2025

    Accepted: --

    Published Online: Sep. 29, 2025

    The Author Email:

    DOI:10.19328/j.cnki.2096-8655.2025.04.015

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