Violation of Bell’s inequality for helical Mathieu–Gauss vector modes

IF 2 4区 物理与天体物理 Q3 OPTICS
Edgar Medina-Segura, Francisco I Mecillas-Hernández, Thomas Konrad, Carmelo Rosales-Guzmán, Benjamin Perez-Garcia
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引用次数: 0

Abstract

Vector beams display varying polarisation over planes transversal to their direction of propagation. The variation of polarisation implies that the electric field cannot be expressed as a product of a spatial mode and its polarisation. This non-separability has been analysed for particular vector beams in terms of non–quantum entanglement between the spatial and the polarisation-degrees of freedom, and equivalently, with respect to the degree of polarisation of light. Here we demonstrate theoretically and experimentally that Mathieu–Gauss vector modes violate a Bell-like inequality known as the Clauser–Horn–Shimony–Holt–Bell inequality. This demonstration provides new insights on the violation of Bell inequalities by a more general class of vector modes with elliptical symmetry.
螺旋马修-高斯矢量模式违反贝尔不等式的问题
矢量光束在其传播方向的横向平面上显示出不同的极化。偏振的变化意味着电场不能用空间模式与其偏振的乘积来表示。对于特定的矢量光束,这种不可分性是通过空间自由度和偏振自由度之间的非量子纠缠来分析的,等同于光的偏振程度。在这里,我们从理论和实验上证明,马修-高斯矢量模式违反了一个类似贝尔的不等式,即克劳瑟-霍恩-希莫尼-霍尔特-贝尔不等式。这一论证为更多具有椭圆对称性的矢量模式违反贝尔不等式提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.50
自引率
4.80%
发文量
237
审稿时长
1.9 months
期刊介绍: Journal of Optics publishes new experimental and theoretical research across all areas of pure and applied optics, both modern and classical. Research areas are categorised as: Nanophotonics and plasmonics Metamaterials and structured photonic materials Quantum photonics Biophotonics Light-matter interactions Nonlinear and ultrafast optics Propagation, diffraction and scattering Optical communication Integrated optics Photovoltaics and energy harvesting We discourage incremental advances, purely numerical simulations without any validation, or research without a strong optics advance, e.g. computer algorithms applied to optical and imaging processes, equipment designs or material fabrication.
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