Tunable birefringence and elliptical polarization eigenmodes in a biplate of two quarter-wave plates.

IF 1.4 3区 物理与天体物理 Q3 OPTICS Journal of The Optical Society of America A-optics Image Science and Vision Pub Date : 2023-10-01 DOI:10.1364/JOSAA.499731
Jhon Pabón, Cristian Hernandez, Rafael Torres
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Abstract

Birefringence of elliptical polarization eigenmodes can be conceptualized as a composite system comprising two distinct media: one with linear polarization eigenmodes and the other with circular polarization eigenmodes. However, the practical realization of such a system often involves the combination of two birefringent quarter-wave plates (QWPs). In this study, our objective is to characterize the variable retardation and variable elliptical polarization eigenmodes exhibited by a biplate consisting of two quarter-wave plates. Additionally, we aim to analyze the geometric properties of the transformation of one state of polarization on the Poincaré sphere, employing the emerging state's curve. This curve corresponds to the intersection between the Poincaré sphere and a cone. The outcomes of our study are presented as a function of the angle between the fast axes of the two QWPs. The findings have the potential to contribute to the configuration of q-plates and facilitate the development of quantum communication protocols.

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四分之二波片双板中的可调谐双折射和椭圆偏振本征模。
椭圆偏振本征模的双折射可以概念化为包括两种不同介质的复合系统:一种具有线性偏振本征模式,另一种具有圆偏振本征模块。然而,这种系统的实际实现通常涉及两个双折射四分之一波片(QWP)的组合。在这项研究中,我们的目标是表征由两个四分之一波片组成的双板所表现出的可变延迟和可变椭圆偏振本征模。此外,我们的目的是利用新兴态的曲线来分析庞加莱球面上一种偏振态转换的几何性质。该曲线对应于庞加莱球体和圆锥体之间的交点。我们的研究结果是作为两个QWP的快轴之间的角度的函数呈现的。这些发现有可能为q板的配置做出贡献,并促进量子通信协议的发展。
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来源期刊
CiteScore
3.40
自引率
10.50%
发文量
417
审稿时长
3 months
期刊介绍: The Journal of the Optical Society of America A (JOSA A) is devoted to developments in any field of classical optics, image science, and vision. JOSA A includes original peer-reviewed papers on such topics as: * Atmospheric optics * Clinical vision * Coherence and Statistical Optics * Color * Diffraction and gratings * Image processing * Machine vision * Physiological optics * Polarization * Scattering * Signal processing * Thin films * Visual optics Also: j opt soc am a.
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