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基于聚合物中取向增强光折变效应的非线性超分辨率成像

Nonlinear super-resolution imaging via orientationally enhanced photorefractive effect in polymer.

作者信息

Han Jing, Xu Qinfeng, Chen Jiannong, Zhu Linwei

出版信息

Opt Lett. 2021 May 15;46(10):2441-2444. doi: 10.1364/OL.424482.

Abstract

Resulting from the attenuation of evanescent waves in imaging, conventional microscopy techniques always yield few subwavelength features. In this Letter, a nonlinear far-field super-resolution technique is investigated, which is theoretically beyond the linear diffraction limitation. Based on the orientationally enhanced photorefractive effect of polymer, an inherently phase-matched diffraction grating is established and generates daughter modes by wave mixture. Almost all of these modes can pass through a finite-aperture filter and be sensed for reconstruction. An improvement of resolution of about four times is obtained and expected to be increased further. This work may provide a potential strategy for various subwavelength-resolved imaging applications.

摘要

由于成像中倏逝波的衰减,传统显微镜技术总是只能产生很少的亚波长特征。在本信函中,研究了一种非线性远场超分辨率技术,该技术在理论上超越了线性衍射极限。基于聚合物的取向增强光折变效应,建立了一种固有的相位匹配衍射光栅,并通过波混合产生子模式。几乎所有这些模式都可以通过有限孔径滤波器并被检测用于重建。分辨率提高了约四倍,并且有望进一步提高。这项工作可能为各种亚波长分辨成像应用提供一种潜在策略。

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