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用于通过散射介质成像的全偏振波前整形

Full-polarization wavefront shaping for imaging through scattering media.

作者信息

Li Runze, Peng Tong, Zhou Meiling, Yu Xianghua, Min Junwei, Yang Yanlong, Yao Baoli

出版信息

Appl Opt. 2020 Jun 10;59(17):5131-5135. doi: 10.1364/AO.391909.

Abstract

The scattering effect occurring when light passes through inhomogeneous-refractive-index media such as atmosphere or biological tissues will scramble the light wavefront into speckles and impede optical imaging. Wavefront shaping is an emerging technique for imaging through scattering media that works by addressing correction of the disturbed wavefront. In addition to the phase and amplitude, the polarization of the output scattered light will also become spatially randomized in some cases. The recovered image quality and fidelity benefit from correcting as much distortion of the scattered light as possible. Liquid-crystal spatial light modulators (LC-SLMs) are widely used in the wavefront shaping technique, since they can provide a great number of controlled modes and thereby high-precision wavefront correction. However, due to the working principle of LC-SLMs, the wavefront correction is restricted to only one certain linear polarization state, resulting in retrieved image information in only the right polarization, while the information in the orthogonal polarization is lost. In this paper, we describe a full-polarization wavefront correction system for shaping the scattered light wavefront in two orthogonal polarizations with a single LC-SLM. The light speckles in both polarizations are corrected for retrieval of the full polarization information and faithful images of objects. As demonstrated in the experiments, the focusing intensity can be increased by full-polarization wavefront correction, images of objects in arbitrary polarization states can be retrieved, and the polarization state of the object's light can also be recognized.

摘要

当光穿过诸如大气或生物组织等折射率不均匀的介质时,会产生散射效应,这种效应会将光波前散射成散斑,从而阻碍光学成像。波前整形是一种新兴的透过散射介质成像的技术,其工作原理是对受干扰的波前进行校正。除了相位和幅度外,在某些情况下,输出散射光的偏振也会在空间上随机化。尽可能多地校正散射光的畸变,有助于提高恢复图像的质量和保真度。液晶空间光调制器(LC-SLM)在波前整形技术中被广泛应用,因为它们可以提供大量可控模式,从而实现高精度的波前校正。然而,由于LC-SLM的工作原理,波前校正仅限于某一种特定的线性偏振态,导致只能获取正确偏振方向上的图像信息,而正交偏振方向上的信息则会丢失。在本文中,我们描述了一种全偏振波前校正系统,该系统使用单个LC-SLM对两个正交偏振方向上的散射光波前进行整形。对两个偏振方向上的光散斑进行校正,以获取完整的偏振信息和物体的真实图像。实验表明,通过全偏振波前校正可以提高聚焦强度,能够获取任意偏振态物体的图像,还可以识别物体光的偏振态。

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