Chen Meijun, Liu Honglin, Liu Zhentao, Lai Puxiang, Han Shensheng
Opt Lett. 2019 Dec 15;44(24):5997-6000. doi: 10.1364/OL.44.005997.
Optical imaging through inhomogeneous media based on autocorrelations suffers from a limited field of view (FOV), since the optical memory effect (ME) of a scattering medium has its inherent angular extent. Here we successfully expand the angular ME range by exploiting a spatial filtering technique to select low-frequency components, mainly ballistic light and less scattered light, thereby increasing the FOV of the speckle autocorrelation imaging. Both a simulation and experimental verifications are presented. This technique, which is not limited to the discussed 4f structure, can provide a guideline for the design of an optical system to image through scattering media.
基于自相关的非均匀介质光学成像存在视场(FOV)受限的问题,因为散射介质的光学记忆效应(ME)具有其固有的角范围。在这里,我们通过利用空间滤波技术选择低频分量(主要是弹道光和较少散射的光)成功扩展了角ME范围,从而增加了散斑自相关成像的视场。给出了模拟和实验验证。该技术不限于所讨论的4f结构,可为通过散射介质成像的光学系统设计提供指导。