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通过在太空中使用高偏振激光源,对空间到地面的大气传播路径进行偏振测量。

Polarization measurements through space-to-ground atmospheric propagation paths by using a highly polarized laser source in space.

作者信息

Toyoshima Morio, Takenaka Hideki, Shoji Yozo, Takayama Yoshihisa, Koyama Yoshisada, Kunimori Hiroo

机构信息

Space Communications Group, New Generation Wireless Communications Research Center, National Institute of Information and Communications Technology, 4-2-1 Nukui-Kitamachi, Koganei, Tokyo 184-8795, Japan.

出版信息

Opt Express. 2009 Dec 7;17(25):22333-40. doi: 10.1364/OE.17.022333.

Abstract

The polarization characteristics of an artificial laser source in space were measured through space-to-ground atmospheric transmission paths. An existing Japanese laser communication satellite and optical ground station were used to measure Stokes parameters and the degree of polarization of the laser beam transmitted from the satellite. As a result, the polarization was preserved within an rms error of 1.6 degrees, and the degree of polarization was 99.4+/-4.4% through the space-to-ground atmosphere. These results contribute to the link estimation for quantum key distribution via space and provide the potential for enhancements in quantum cryptography worldwide in the future.

摘要

通过空对地大气传输路径测量了空间中人造激光源的偏振特性。利用现有的日本激光通信卫星和光学地面站测量了从卫星发射的激光束的斯托克斯参数和偏振度。结果表明,偏振在均方根误差1.6度范围内得以保持,通过空对地大气的偏振度为99.4±4.4%。这些结果有助于通过空间进行量子密钥分发的链路估计,并为未来全球量子密码学的增强提供了潜力。

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