Information structure of a polarization state: the concept of metaspin

J. J. Gil, A. Norrman, A. T. Friberg, T. Setälä
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Abstract

A complete description of the polarization properties of a random, stationary, generally three-dimensional (3D) optical field in a point is provided by the 3×3 polarization matrix. We show that its nine degrees of freedom can be represented by nine independent and decoupled parameters with simple and significant physical meanings. These cover the three orientation angles determining the intrinsic reference frame with respect to an arbitrary one, the three principal intensities representing the strengths of the components of the electric field along the respective intrinsic reference axes, and a real-valued vector, which we term metaspin, whose three components are given by the intrinsic correlations of the field components. Consequently, any given polarization state has an associated intensity-isotropic state, called the metaspin state, whose spin vector is fully determined by the metaspin vector. We also show that the concept of metaspin provides an illustrative synthesis procedure for 3D polarization states. The results can straightforwardly be applied to any 3×3 density matrix.
极化状态的信息结构:元蛋白的概念
3×3 偏振矩阵完整地描述了一个点上随机、静止、一般三维(3D)光场的偏振特性。我们的研究表明,它的九个自由度可以用九个独立的解耦参数来表示,这些参数具有简单而重要的物理意义。这些参数包括决定固有参考框架相对于任意参考框架的三个方向角、代表沿各自固有参考轴的电场分量强度的三个主强度,以及一个实值矢量(我们称之为 metaspin),其三个分量由电场分量的固有相关性给出。因此,任何给定的偏振态都有一个相关的强度各向同性态,称为元旋态,其自旋矢量完全由元旋矢量决定。我们还表明,元旋的概念为三维偏振态提供了一个说明性的合成程序。这些结果可以直接应用于任何 3×3 密度矩阵。
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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