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首页> 外文期刊>Applied optics >Helical wavefront and beam shape modulated by advanced liquid crystal q-plate fabricated via photoalignment and analyzed by Michelson's interference
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Helical wavefront and beam shape modulated by advanced liquid crystal q-plate fabricated via photoalignment and analyzed by Michelson's interference

机译:螺旋形波前和光束形状通过光对准技术制造的高级液晶q板调制,并通过迈克尔逊干涉分析

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摘要

In this study, electrically tunable advanced liquid crystal q-plates (ALCQPs) that combine two q values in one device to generate optical vortex beams were fabricated using a photoalignment method that involves the use of azo dye, a surfactant alignment material. The electrically tunable ALCQP device could be modulated to control the shape and polarization of a circularly polarized Gaussian laser beam that propagated through the device. A Gaussian beam modulated by an ALCQP under suitable applied voltage showed a variation beam shape with helical wavefront, as demonstrated by Michelson's interference. This helical wavefront beam carries an orbital angular momentum and can be used in an optical tweezers system to trap, move, and rotate particles simultaneously.
机译:在这项研究中,使用光取向法制造了可电调谐的先进液晶q板(ALCQP),该器件在一个设备中结合了两个q值以产生光学涡旋光束,该方法涉及使用偶氮染料(一种表面活性剂取向材料)。可以对电可调ALCQP器件进行调制,以控制传播通过该器件的圆偏振高斯激光束的形状和偏振。迈克尔逊的干涉证明,在适当的施加电压下,由ALCQP调制的高斯光束显示出具有螺旋波前的变化光束形状。该螺旋波前光束带有一个轨道角动量,可用于光镊系统中,以同时捕获,移动和旋转粒子。

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