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Wavefront compensation simulation of modulating retroreflector free-space optical link utilizing micro corner-cube-reflector arrays

机译:利用微角立方反射器阵列调制回射器自由空间光链路的波前补偿模拟

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The wavefront compensation effect of the micro corner-cube-reflector arrays (MCCRAs) in modulating retroreflector (MRR) free-space optical (FSO) link is investigated by wave-optics (WO) simulation method that is based on the split-step beam propagation method and phase screen theory. Two kinds of the MCCRAs with the cell's apertures of the triangle and hexagon are considered with the aid of the numerical ray-tracing approach. Integrating the reflection phase of the MCCRAs into WO simulations, the double-pass propagation of light beam through the turbulent atmosphere is simulated to study the characteristics of the returned optical beam. We find the spread spot of the optical beam reflected from the MCCRAs is rather convergent as compared with that reflected from a single corner cube reflector. Hence, we draw a conclusion that the MCCRAs can in principle yield a powerful wavefront compensation in MRR FSO communication links.
机译:通过基于分步光束的波光(WO)模拟方法研究了微角立方反射器阵列(MCCRA)在调制后向反射器(MRR)自由空间光学(FSO)链路中的波前补偿效果。传播方法和相位屏蔽理论。借助于数值射线追踪方法,可以考虑两种具有单元孔的三角形和六边形的MCCRA。将MCCRA的反射相位集成到WO模拟中,模拟了光束通过湍流大气的双程传播,以研究返回光束的特性。我们发现,与从单个角锥棱镜反射器反射的光束相比,从MCCRA反射的光束的扩散点相当收敛。因此,我们得出一个结论,即MCCRA原则上可以在MRR FSO通信链路中产生强大的波前补偿。

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