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基于卤化亚汞的具有大输出光束分离度的宽带沃拉斯顿棱镜。

Broadband Wollaston prism with a large output beam separation based on mercurous halides.

作者信息

Krauz Lukáš, Páta Petr, Bednář Jan, Klíma Miloš, Janout Petr

出版信息

Opt Express. 2022 Dec 19;30(26):47388-47403. doi: 10.1364/OE.477544.

Abstract

The paper proposes a Wollaston-type crystal polarizer suitable for broadband operation within the visible spectral band up to the far infrared band based on unique optical materials, mercurous halides (HgX). This paper introduces the general characteristics and optical properties of these birefringent tetragonal optical materials, as well as the general description of a Wollaston prism and the process of its parameter optimization. In general, the Wollaston polarizer is constructed from two combined wedge-shaped prisms. The key parameters that affect the properties of the Wollaston polarizer are then the cut angle of these two prisms and the refractive index of the exploited optical cement (immersion) that bonds the prisms together. The optimal prism cut angles and immersion refractive index are investigated to maximize the Wollaston parameters, such as the transmittance of the polarized radiation and the separation angle of the output orthogonally polarized beams. This process is significantly dependent on the characteristics of all selected mercurous halides (HgCl, HgBr, HgI). The optimal values of the prism cut angle for each material are selected based on the outlined results. In addition, the Wollaston prism behaviour regarding real radiation propagation is modelled in detail via the Zemax optical studio. The presented models aim to aid in the real design and fabrication of a broadband Wollaston polarizer based on mercurous halides.

摘要

本文提出了一种基于独特光学材料卤化亚汞(HgX)的沃拉斯顿型晶体偏振器,适用于可见光波段直至远红外波段的宽带操作。本文介绍了这些双折射四方光学材料的一般特性和光学性质,以及沃拉斯顿棱镜的一般描述及其参数优化过程。一般来说,沃拉斯顿偏振器由两个组合的楔形棱镜构成。影响沃拉斯顿偏振器性能的关键参数是这两个棱镜的切割角以及用于将棱镜粘结在一起的所用光学胶合剂(浸没液)的折射率。研究了最佳棱镜切割角和浸没折射率,以最大化沃拉斯顿参数,如偏振辐射的透射率和输出正交偏振光束的分离角。这个过程很大程度上取决于所有选定卤化亚汞(HgCl、HgBr、HgI)的特性。根据概述的结果为每种材料选择棱镜切割角的最佳值。此外,通过Zemax光学软件详细模拟了沃拉斯顿棱镜在实际辐射传播中的行为。所提出的模型旨在帮助基于卤化亚汞实际设计和制造宽带沃拉斯顿偏振器。

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