首页> 外文期刊>IEEE journal of selected topics in quantum electronics: A publication of the IEEE Lasers and Electro-optics Society >An All-Liquid-Crystal Strategy for Fast Orbital Angular Momentum Encoding and Optical Vortex Steering
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An All-Liquid-Crystal Strategy for Fast Orbital Angular Momentum Encoding and Optical Vortex Steering

机译:一种用于快速轨道角动量编码和光学涡旋转向的全液晶策略

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摘要

An all-liquid-crystal device for fast orbital angular momentum encoding and optical vortex beam steering is proposed and demonstrated. It is a combination of a cascaded spin-determined beam deflector and an optical vortex generator. The fast switching derives from the rapid in-plane optical axis rotation of ferroelectric liquid crystal half-wave plates, while the q-plate and meta-q-plate made by photopatterned liquid crystal polymer ensure high-quality and efficient orbital angular momentum encoding. By programing the binary signals applied to the half-wave plates, electrical optical vortex deflection and 32 different orbital angular momentum encoding are achieved faster than 70 mu s with a total efficiency over 85. It supplies a practical strategy for fast optical vortex steering and orbital angular momentum encoding and may be broadly used in vortex LiDAR, multitarget communications and orbital angular momentum multiplexed optical telecoms.
机译:提出并演示了一种用于快速轨道角动量编码和光学涡旋光束转向的全液晶器件。它是级联自旋确定光束偏转器和光学涡旋发生器的组合。快速切换源于铁电液晶半波板的快速面内光轴旋转,而由光图案液晶聚合物制成的q-plate和meta-q-plate保证了高质量和高效的轨道角动量编码。通过对施加在半波板上的二进制信号进行编程,实现了超过70μs的电光涡旋偏转和32种不同轨道角动量编码,总效率超过85%。它为快速光涡旋转向和轨道角动量编码提供了一种实用的策略,可广泛应用于涡旋激光雷达、多目标通信和轨道角动量复用光通信。

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