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Experimental verification of an adaptive optical multiaperture receive antenna for laser space communications

机译:用于激光空间通信的自适应光学多孔径接收天线的实验验证

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摘要

Abstract: The feasibility of phase telescope arrays for coherent optical space communications is demonstrated by a proof-of-concept laboratory experiment. The incident optical power is collected by four subtelescopes and coherently combined into a single monomode output fiber. The implemented optical receive array antenna is self-phasing, i.e., the optical subfield pistons are automatically adapted with respect to the direction of the incident wavefront. The telescope array is completely independent of any subsequent receiver and of the data modulation format employed. Our experimental setup operates at a wavelength of 1064 nm. With an optical input power of 1 nW per subaperture, the system efficiently combines the optical input subwaves and responds to a step-shaped change of the input wavefront direction within 1 ms. !8
机译:摘要:通过概念验证的实验室实验证明了相位望远镜阵列在相干光空间通信中的可行性。入射光功率由四个子望远镜收集,并相干地组合成一条单模输出光纤。所实现的光接收阵列天线是自定相的,即,光子场活塞相对于入射波前的方向自动适应。望远镜阵列完全独立于任何后续接收器和所采用的数据调制格式。我们的实验装置在1064 nm的波长下工作。每个子孔径的光输入功率为1 nW,该系统有效地组合了光输入子波,并在1 ms内响应输入波阵面方向的阶梯状变化。 !8

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