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METHOD AND SYSTEM FOR MEASURING PHOTON ORBITAL ANGULAR MOMENTUM MODE BASED ON SPIRAL TRANSFORMATION

机译:基于螺旋变换的光子轨道角动量模式测量方法及系统

摘要

A method and a system for measuring photon orbital angular momentum mode based on spiral transformation: by means of a phase plate (1) positioned on an input plane, mapping an incident light field along a helical path on the input plane to a straight line on an output plane; a phase plate (2) positioned on the output plane compensates the phase of the light field accumulated when propagating from the input plane to the output plane during the transformation process, thereby implementing transformation of the photon orbital angular momentum mode to be measured at the input plane to a plane wave mode having a specific oblique wavefront at the output plane; by means of a convex lens, focusing plane wave modes having a different oblique wavefront to different positions on a focal plane, thereby implementing the one-to-one correspondence and detection of the photon orbital angular momentum mode to be measured and the spatial position. The problem of the crosstalk of adjacent modes caused by demodulation spot broadening is effectively overcome, further implementing high resolution photon orbital angular momentum mode measurements whilst maintaining high demodulation efficiency.
机译:一种基于螺旋变换的光子轨道角动量模式的测量方法和系统:借助于位于输入平面上的相位板(1),将入射光场沿着输入平面上的螺旋路径映射到直线上。输出平面;位于输出平面上的相位板(2)补偿在转换过程中从输入平面传播到输出平面时累积的光场的相位,从而实现要在输入端测量的光子轨道角动量模的转换在输出平面上具有特定斜波前的平面到平面波模式;借助于凸透镜,将具有不同的斜波前的平面波模式聚焦到焦平面上的不同位置,从而实现一对一的对应关系并检测要测量的光子轨道角动量模式和空间位置。有效地克服了由解调光斑加宽引起的相邻模串扰的问题,进一步实现了高分辨率光子轨道角动量模测量,同时保持了高解调效率。

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