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使用夏克-哈特曼波前传感器进行高阶光学涡旋位置检测。

High-order optical vortex position detection using a Shack-Hartmann wavefront sensor.

作者信息

Luo Jia, Huang Hongxin, Matsui Yoshinori, Toyoda Haruyoshi, Inoue Takashi, Bai Jian

出版信息

Opt Express. 2015 Apr 6;23(7):8706-19. doi: 10.1364/OE.23.008706.

Abstract

Optical vortex (OV) beams have null-intensity singular points, and the intensities in the region surrounding the singular point are quite low. This low intensity region influences the position detection accuracy of phase singular point, especially for high-order OV beam. In this paper, we propose a new method for solving this problem, called the phase-slope-combining correlation matching method. A Shack-Hartmann wavefront sensor (SH-WFS) is used to measure phase slope vectors at lenslet positions of the SH-WFS. Several phase slope vectors are combined into one to reduce the influence of low-intensity regions around the singular point, and the combined phase slope vectors are used to determine the OV position with the aid of correlation matching with a pre-calculated database. Experimental results showed that the proposed method works with high accuracy, even when detecting an OV beam with a topological charge larger than six. The estimated precision was about 0.15 in units of lenslet size when detecting an OV beam with a topological charge of up to 20.

摘要

光学涡旋(OV)光束具有零强度奇点,且奇点周围区域的强度相当低。这个低强度区域会影响相位奇点的位置检测精度,特别是对于高阶OV光束。在本文中,我们提出了一种解决此问题的新方法,称为相位斜率组合相关匹配方法。使用夏克-哈特曼波前传感器(SH-WFS)在SH-WFS的子透镜位置测量相位斜率向量。将几个相位斜率向量组合成一个以减少奇点周围低强度区域的影响,并借助与预先计算的数据库进行相关匹配,使用组合后的相位斜率向量来确定OV的位置。实验结果表明,即使在检测拓扑电荷大于六的OV光束时,所提出的方法也能高精度地工作。在检测拓扑电荷高达20的OV光束时,估计精度约为0.15(以子透镜尺寸为单位)。

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