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Degrees of coherence of partially polarized light: invariance and information properties

机译:部分偏振光的相干程度:不变性和信息属性

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We address the problem of defining degrees of coherence for partially polarized Gaussian light. Some previously published approaches provide efficient solutions to this problem, but we will show on simple examples that they do not clearly separate partial polarization and partial coherence effects. We thus introduce intrinsic degrees of coherence, which characterize partial coherence independently of the choice of coordinate systems and of the partial polarization state of each field. The larger of these degrees has a clear physical meaning since it corresponds to the largest scalar degree of coherence that can be obtained after propagating the light waves through polarization modulators and perfect polarizers. Another interesting physical interpretation is obtained by relating the intrinsic degrees of coherence to the Shannon entropy, which is a classic measure of the "disorder" of a physical phenomenon.
机译:我们解决了为部分偏振高斯光线定义相干程度的问题。一些以前发表的方法为此问题提供了有效的解决方案,但我们将展示他们不明确分离部分极化和部分相干效果的简单示例。因此,我们引入了内在的相干程度,其特征是偏相相独立于坐标系的选择和每个场的部分偏振状态。这些度的越大具有明显的物理含义,因为它对应于通过偏振调制器和完美的偏振器传播光波之后可以获得的最大标量度。通过将本征的连贯性与香农熵相结合来获得另一个有趣的物理解释,这是物理现象的“紊乱”的经典衡量标准。

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