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Partial coherence and polarization in electromagnetic interference

机译:电磁干扰中的部分相干和极化

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While the theories of the optical coherence of scalar fields and the polarization of beam fields are well established, a general theory for the coherence and polarization of true electromagnetic fields appears more subtle. With random vector fields coherence may reside among any or all of the electric-field components, leading to a modulation of the optical intensity or the polarization state, or both, on two-beam interference. We discuss the recent formulations of both the polarization and the coherence, and we show that the electromagnetic degree of coherence is characterized by the modulation of all the four Stokes parameters (representing intensity and polarization state) in a two-pinhole Young's setup. This also leads to a new experimental interpretation for the degree polarization of a random electromagnetic beam. Certain important results pertaining to electromagnetic coherence, which axe fully analogous to their scalar counterparts, are emphasized.
机译:虽然已经很好地建立了标量场的光学相干性和光束场极化的理论,但真正的电磁场的相干性和极化的一般理论显得更加微妙。对于随机矢量场,相干性可以存在于任何或所有电场分量之间,从而导致在双光束干扰下对光强度或偏振态或这两者的调制。我们讨论了极化和相干的最新公式,并且我们证明了电磁相干度的特征在于在两个针孔杨氏装置中对所有四个斯托克斯参数(代表强度和极化状态)的调制。这也为随机电磁束的极化程度带来了新的实验解释。强调了与电磁相干有关的某些重要结果,这些结果与标量对应物完全类似。

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