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Generalized quantitative approach to two-beam fringe visibility(coherence) with different polarizations and frequencies

机译:具有不同偏振和频率的双光束条纹能见度(相干)的广义定量方法

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All two-beam interferometry eventually reduces to quantitative measurement of the effective fringe visibility (ordegree of coherence) in some form. We present generalized analytical and experimental results of visibility for the casesof two beam Poynting vectors both collinear (scanning fringe mode) and non-collinear (spatial fringe mode) withdifferent polarizations and frequencies. This leads to a much broader and deeper understanding of the roles of materialdipoles (beam splitters & detectors; both classical and quantum) in measured coherence effects that are not explicitlyaddressed in the traditional coherence theory. Coherence theory should be presented as correlation between sensingdipole undulations that are simultaneously induced by superposed light beams rather than as correlation between theoptical fields. This generalized understanding of the physical processes behind coherence phenomenon will open up (i)better understanding of the nature of light and (ii) many more innovative approaches to quantitative interferometry.
机译:所有双光束干涉测量术最终以某种形式减少了定量测量有效条纹能见度(一致性)的有效条纹能见度。我们呈现了两个光束Poynting载体的可见度的广义分析和实验结果,两者(扫描条纹模式)和非共线(空间条纹模式)偏离极化和频率。这导致了更广泛而更深入地了解物料露出者(束分离器和探测器;古典和量子)在传统的相干理论中未明确地明确的相干效果中的作用。相干理论应作为由叠加光束同时引起的感测宽波波波束之间的相关性,而不是光学领域之间的相关性。这种广泛的认识了相干现象背后的物理流程将开放(i)更好地了解光的性质和(ii)许多更具创新性的定量干涉测量方法的方法。

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