Beam coherence-polarization matrix

F. Gori, M. Santarsiero, S. Vicalvi, R. Borghi, G. Guattari
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引用次数: 145

Abstract

We present an approach for describing the properties of a quasi-monochromatic, beam-like field that is both partially polarized and partially coherent from the spatial standpoint. It is based on the use of a single matrix, called the beam coherence-polarization matrix, whose elements have the form of mutual intensities. This approach, which can be viewed as an approximate form of Wolf's general tensorial theory of coherence, appears to be very simple, yet it is able to cover significant aspects of the beam behaviour that would not be accounted for by a scalar theory or by a local polarization matrix approach. A peculiar interference law applying to mutual intensities is derived. We show through simple examples how this approach leads to distinguish fields that would appear identical in a scalar treatment or in a local polarization matrix description. Hints for extensions are given.
光束相干偏振矩阵
我们提出了一种从空间角度描述半单色、部分极化和部分相干的类光束场的特性的方法。它基于使用单一矩阵,称为光束相干偏振矩阵,其元素具有相互强度的形式。这种方法可以看作是Wolf广义张量相干理论的近似形式,看起来非常简单,但它能够涵盖标量理论或局部极化矩阵方法无法解释的光束行为的重要方面。导出了适用于相互强度的特殊干涉律。我们通过简单的例子展示了这种方法如何导致区分在标量处理或局部极化矩阵描述中看起来相同的场。给出了扩展的提示。
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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