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All-optical suppression on the impact of Sun outage in laser satellite communication systems by using a nonlinear semiconductor optical amplifier

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【作者】 李晓亮刘荣科范峰

【Author】 Xiaoliang Li;Rongke Liu;Feng Fan;School of Electronics and Information Engineering,Beihang University;Beijing Research Institute of Telemetry;

【通讯作者】 李晓亮;刘荣科;

【机构】 School of Electronics and Information Engineering,Beihang UniversityBeijing Research Institute of Telemetry

【摘要】 We introduce an all-optical approach, optical parametric amplification(OPA) processor to suppress the impact of Sun outage in laser satellite communication systems, which is implemented by only one nonlinear semiconductor optical amplifier driven by both electrical and optical pumps. The optimized OPA processor, with a current of 539 mA and a pump-to-signal ratio of 16 dB, could significantly improve the signal quality by 3.5 dB in experiments for the elevation angle of Sun radiation of 0 rad. The signal quality improvement is observed in the whole range of the elevation angle, confirming the effectiveness of the proposed OPA processor in the field of Sun radiation mitigation.

【Abstract】 We introduce an all-optical approach, optical parametric amplification(OPA) processor to suppress the impact of Sun outage in laser satellite communication systems, which is implemented by only one nonlinear semiconductor optical amplifier driven by both electrical and optical pumps. The optimized OPA processor, with a current of 539 mA and a pump-to-signal ratio of 16 dB, could significantly improve the signal quality by 3.5 dB in experiments for the elevation angle of Sun radiation of 0 rad. The signal quality improvement is observed in the whole range of the elevation angle, confirming the effectiveness of the proposed OPA processor in the field of Sun radiation mitigation.

【基金】 supported by the National Key Research and Development Program of China (No. 2022YFB2803205);the National Basic Research Project (No. JCKY2020560B001).
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2024年02期
  • 【分类号】TN929.13
  • 【下载频次】1
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