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多功能超颖光学方位角剪切干涉仪

Multifunctional Meta-optic Azimuthal Shear Interferometer.

作者信息

Yu Linzhi, Shevtsov Sergei, Singh Haobijam Johnson, Kazansky Peter G, Caglayan Humeyra

机构信息

Department of Physics, Tampere University, 33720 Tampere, Finland.

Optoelectronics Research Centre, University of Southampton, Southampton SO17 1BJ, U.K.

出版信息

Nano Lett. 2025 May 7;25(18):7419-7425. doi: 10.1021/acs.nanolett.5c00873. Epub 2025 Apr 23.

Abstract

Azimuthal shear interferometry is a versatile tool for analyzing wavefront asymmetries. However, conventional systems are bulky, alignment-sensitive, and prone to nonuniform shear. We present a broadband, compact, and robust meta-optics-based azimuthal shear interferometer in a common-path configuration, reducing the system size to the millimeter scale. Unlike conventional designs, the meta-optic azimuthal shear interferometer utilizes the localized wavefront modulation capabilities of meta-optics to achieve uniform azimuthal shear displacement independent of the radial position, significantly enhancing accuracy and stability. Our approach eliminates the need for bulky optical components and precise multipath alignment, making it more resilient to environmental disturbances. Its multifunctionality is demonstrated through applications in all-optical edge detection, differential interference contrast microscopy, and aberrated wavefront sensing. These results underscore its potential for real-time analog image processing, advanced optical imaging, and optical testing.

摘要

方位角剪切干涉测量法是一种用于分析波前不对称性的多功能工具。然而,传统系统体积庞大、对对准敏感且容易出现不均匀剪切。我们展示了一种基于超表面光学的宽带、紧凑且坚固的共光路配置方位角剪切干涉仪,将系统尺寸减小到毫米级。与传统设计不同,超表面光学方位角剪切干涉仪利用超表面光学的局部波前调制能力,实现与径向位置无关的均匀方位角剪切位移,显著提高了精度和稳定性。我们的方法无需庞大的光学组件和精确的多光路对准,使其对环境干扰更具弹性。通过在全光边缘检测、微分干涉对比显微镜和像差波前传感中的应用展示了其多功能性。这些结果突出了其在实时模拟图像处理、先进光学成像和光学测试方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b127/12063176/83aeed01c618/nl5c00873_0001.jpg

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