Single-mode fiber coupling with a M-SPGD algorithm for long-range quantum communications

Satellite-based quantum communication is a promising approach for realizing global-scale quantum networks. For free-space quantum channel, single-mode fiber coupling is particularly important for improving the signal-to-noise ratio of daylight quantum key distribution (QKD) and compatibility with st...

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Veröffentlicht in:Optics express 2020-11, Vol.28 (24), p.36600-36610
Hauptverfasser: Yang, Kui-Xing, Abulizi, Maimaiti, Li, Yu-Huai, Zhang, Bo-Yang, Li, Shuang-Lin, Liu, Wei-Yue, Yin, Juan, Cao, Yuan, Ren, Ji-Gang, Peng, Cheng-Zhi
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Sprache:eng
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Zusammenfassung:Satellite-based quantum communication is a promising approach for realizing global-scale quantum networks. For free-space quantum channel, single-mode fiber coupling is particularly important for improving the signal-to-noise ratio of daylight quantum key distribution (QKD) and compatibility with standard fiber-based QKD. However, achieving a highly efficient and stable single-mode coupling efficiency under strong atmospheric turbulence remains experimentally challenging. Here, we develop a single-mode receiver with an adaptive optics (AO) system based on a modal version of the stochastic parallel gradient descent (M-SPGD) algorithm and test its performance over an 8 km urban terrestrial free-space channel. Under strong atmospheric turbulence, the M-SPGD AO system obtains an improvement of about 3.7 dB in the single-mode fiber coupling efficiency and a significant suppression of fluctuation, which can find its applications in free-space long-range quantum communications.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.411939