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首页> 外文期刊>Applied optics >Visualization and calculation of polarized light. I. The polarization ellipse, the Poincare sphere and the hybrid polarization sphere
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Visualization and calculation of polarized light. I. The polarization ellipse, the Poincare sphere and the hybrid polarization sphere

机译:偏振光的可视化和计算。一,极化椭圆,庞加莱球和混合极化球

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We describe the historical and mathematical development of the polarization ellipse and the Poincare sphere. We point out the limitations of the Poincare sphere in its present use. To overcome these limitations we describe a new polarization sphere that we call the hybrid polarization sphere. This name is used because phase shifting and rotation of polarization components are described by small circles. Furthermore, longitudinal and latitudinal great circles are introduced so that the coordinates of a point on the sphere can be read. The hybrid polarization sphere is described and applied to polarizers, wave plates, and rotators. As a result, the hybrid polarization sphere can be used for both visualization and calculation and enables the difficulties associated with the Poincare sphere to be overcome.
机译:我们描述了极化椭圆和庞加莱球的历史和数学发展。我们指出了Poincare球体在当前使用中的局限性。为了克服这些限制,我们描述了一个新的极化球,我们称之为混合极化球。使用此名称是因为偏振分量的相移和旋转用小圆圈表示。此外,还引入了纵向和横向大圆,以便可以读取球体上某个点的坐标。描述了混合偏振球,并将其应用于偏振器,波片和旋转器。结果,混合偏振球可以用于可视化和计算,并且可以克服与庞加莱球相关的困难。

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