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FAST:用于通过大气湍流的双向地面-空间光链路的傅里叶域自适应光学仿真工具。

FAST: Fourier domain adaptive optics simulation tool for bidirectional ground-space optical links through atmospheric turbulence.

作者信息

Farley O J D, Townson M J, Osborn J

出版信息

Opt Express. 2022 Jun 20;30(13):23050-23064. doi: 10.1364/OE.458659.

Abstract

Free space optical links between the ground and space may be severely degraded by atmospheric turbulence. Adaptive Optics, a technique allowing partial correction of this degradation, is beginning to see use in the field with the potential to achieve more robust and higher bandwidth links. Here we present a simulation tool, FAST, which utilises an analytical Fourier domain Adaptive Optics model developed for astronomy. Using the reciprocity principle, the simulation may be applied either to downlink post-compensated or uplink pre-compensated beams. We show that FAST gives similar results to full end-to-end simulations with wave-optical propagation whilst being between 10 and 200 times faster, enabling the characterisation of optical links with complex Adaptive Optics systems in timely fashion.

摘要

地面与太空之间的自由空间光链路可能会因大气湍流而严重退化。自适应光学是一种能够部分校正这种退化的技术,目前已开始在该领域得到应用,有望实现更稳定、更高带宽的链路。在此,我们展示了一种模拟工具FAST,它利用了为天文学开发的解析傅里叶域自适应光学模型。利用互易原理,该模拟可应用于下行链路后补偿光束或上行链路预补偿光束。我们表明,FAST与采用波动光学传播的全端到端模拟结果相似,同时速度快10到200倍,能够及时对具有复杂自适应光学系统的光链路进行特性描述。

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