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Ultra-low loss laser communications technique using smart beamforming optics

机译:使用智能波束成形光学器件的超低损耗激光通信技术

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摘要

Theory and design is presented for a technique for ultra-low loss laser communication that uses a combination of strong and weak thin lens optics, hence obeying the paraxial approximation. As opposed to conventional laser communication systems, the Gaussian laser beam is prevented from diverging at the receiving station by using a weak thin lens that places the transmitted beam waist mid-way between a symmetrical transmitter-receiver link design. The weak lens can be a fixed optic for static link distances or programmable for mobile scenarios. The programmable weak optic can be a single pixel or multi-pixel lens made by liquid crystal or mirror technologies. The proposed link design is appropriate for low air turbulence links such as short-range or indoor links and space based links.
机译:提出了一种针对超低损耗激光通信技术的理论和设计,该技术使用强和弱薄透镜光学元件的组合,因此遵循近轴近似。与传统的激光通信系统相反,通过使用弱的薄透镜,可以防止高斯激光束在接收站发散,该透镜将发射光束的腰部放在对称的发射器-接收器链路设计之间。弱透镜可以是用于固定链接距离的固定光学器件,也可以是用于移动场景的可编程透镜。可编程弱光学器件可以是通过液晶或反射镜技术制成的单像素或多像素透镜。所提出的链节设计适用于低空气湍流链节,例如短距离或室内链节以及基于空间的链节。

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