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Turbulent phase noise on asymmetric two-way ground-satellite coherent optical links

机译:不对称双向地面卫星相干光学链路上的湍流相位噪声

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Bidirectional ground-satellite laser links suffer from turbulence-induced scintillation and phase distortion. We study how turbulence impacts on coherent detection capacity and on the associated phase noise that restricts clock transfer precision. We evaluate the capacity to obtain a two-way cancellation of atmospheric effects despite the asymmetry between up and down link that limits the link reciprocity. For ground-satellite links, the asymmetry is induced by point-ahead angle and possibly the use, for the ground terminal, of different transceiver diameters, in reception and emission. The quantitative analysis is obtained thanks to refined end-to-end simulations under realistic turbulence and wind conditions as well as satellite cinematic. Simulations make use of the reciprocity principle to estimate both down and up link performance from wave-optics propagation of descending plane waves. These temporally resolved simulations allow characterising the coherent detection in terms of time series of heterodyne efficiency for different system parameters. We show Tip/Tilt correction on ground is mandatory at reception for the down link and as a pre-compensation of the up link. Good correlation between up and down phase noise is obtained even with asymmetric apertures of the ground transceiver and in spite of pointing ahead angle. The reduction to less than 1 rad~2 of the two-way differential phase noise is very promising for clock transfer.
机译:双向地面卫星激光链路遭受湍流诱导的闪烁和相位畸变。我们研究湍流如何影响相干检测能力以及限制时钟传输精度的相关相位噪声。我们评估了尽管上下链路之间的不对称性的不对称,我们评估了对大气效应的双向消除的能力。对于地卫星链路,不对称性通过点前方角度诱导,并且可能用于接地端子,不同的收发器直径在接收和发射中的使用。通过在现实湍流和风力条件下的精制端到端模拟以及卫星电影下,获得定量分析。仿真利用互惠原理从下降平面波的波光学传播估计下降和上升性能。这些时间上解析的模拟允许在不同系统参数的时间序列中表征相干检测。我们在接收到下降链路的接收中显示尖端/倾斜校正是强制性的,并且作为UP链路的预补偿。即使在接地收发器的不对称孔,也可以获得上下相位噪声之间的良好相关性,并且尽管指向前方角度。双向差分相位噪声的减少到少于1〜2对于时钟传输非常有前途。

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