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用于紧凑型螺旋相衬显微镜的螺旋相位物镜。

Spiral-phase-objective for a compact spiral-phase-contrast microscopy.

作者信息

Lee Dong-Ho, Lee Sunwoo, Bae Ji Yong, Hur Hwan, Hyun Sangwon, Lee Kye-Sung, Chang Ki Soo, Pak Soojong, Kim Dong Uk, Jong Kim I

出版信息

Opt Express. 2023 Oct 9;31(21):34391-34403. doi: 10.1364/OE.499376.

Abstract

Spiral-phase-contrast imaging, which utilizes a spiral phase optical element, has proven to be effective in enhancing various aspects of imaging, such as edge contrast and shadow imaging. Typically, the implementation of spiral-phase-contrast imaging requires the formation of a Fourier plane through a 4f optical configuration in addition to an existing optical microscope. In this study, we present what we believe to be a novel single spiral-phase-objective, integrating a spiral phase plate, which can be easily and simply applied to a standard microscope, such as a conventional objective. Using a new hybrid design approach that combines ray-tracing and field-tracing simulations, we theoretically realized a well-defined and high-quality vortex beam through the spiral-phase-objective. The spiral-phase-objective was designed to have conditions that are practically manufacturable while providing predictable performance. To evaluate its capabilities, we utilized the designed spiral-phase-objective to investigate isotropic spiral phase contrast and anisotropic shadow imaging through field-tracing simulations, and explored the variation of edge contrast caused by changes in the thickness of the imaging object.

摘要

螺旋相位对比成像利用螺旋相位光学元件,已被证明在增强成像的各个方面有效,如边缘对比度和阴影成像。通常,除了现有的光学显微镜外,螺旋相位对比成像的实现需要通过4f光学配置形成傅里叶平面。在本研究中,我们展示了一种我们认为新颖的单螺旋相位物镜,它集成了螺旋相位板,可以轻松简单地应用于标准显微镜,如传统物镜。使用一种结合光线追踪和场追踪模拟的新混合设计方法,我们从理论上通过螺旋相位物镜实现了定义明确且高质量的涡旋光束。螺旋相位物镜的设计满足实际可制造的条件,同时提供可预测的性能。为了评估其能力,我们利用设计的螺旋相位物镜通过场追踪模拟研究各向同性螺旋相位对比和各向异性阴影成像,并探讨成像对象厚度变化引起的边缘对比度变化。

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