Performance verification of adaptive optics for satellite-to-ground coherent optical communications at large zenith angle

天顶 自适应光学 光学 斯太尔率 自由空间光通信 遥感 物理 光通信 波前 失真(音乐) 卫星 地质学 光电子学 天文 CMOS芯片 放大器
作者
Mo Chen,Chao Liu,Daoman Rui,Hao Xian
出处
期刊:Optics Express [The Optical Society]
卷期号:26 (4): 4230-4230 被引量:51
标识
DOI:10.1364/oe.26.004230
摘要

Although there is an urgent demand, it is still a tremendous challenge to use the coherent optical communication technology to the satellite-to-ground data transmission system especially at large zenith angle due to the influence of atmospheric turbulence. Adaptive optics (AO) is a considerable scheme to solve the problem. In this paper, we integrate the adaptive optics (AO) to the coherent laser communications and the performances of mixing efficiency as well as bit-error-rate (BER) at different zenith angles are studied. The analytical results show that the increasing of zenith angle can severely decrease the performances of the coherent detection, and increase the BER to higher than 10-3, which is unacceptable. The simulative results of coherent detection with AO compensation indicate that the larger mixing efficiency and lower BER can be performed by the coherent receiver with a high-mode AO compensation. The experiment of correcting the atmospheric turbulence wavefront distortion using a 249-element AO system at large zenith angles is carried out. The result demonstrates that the AO system has a significant improvement on satellite-to-ground coherent optical communication system at large zenith angle. It also indicates that the 249-element AO system can only meet the needs of coherent communication systems at zenith angle smaller than 65̊ for the 1.8m telescope under weak and moderate turbulence.

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