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An analytical model for the celestial distribution of polarized light, accounting for polarization singularities, wavelength and atmospheric turbidity

机译:偏振光的天体分布的解析模型,考虑了偏振奇异性,波长和大气浊度

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摘要

We present a computationally inexpensive analytical model for simulating celestial polarization patterns in variable conditions. We combine both the singularity theory of Berry et al (2004 New J. Phys. 6 162) and the intensity model of Perez et al (1993 Sol. Energy 50 235-245) such that our single model describes three key sets of data: (1) the overhead distribution of the degree of polarization as well as the existence of neutral points in the sky; (2) the change in sky polarization as a function of the turbidity of the atmosphere; and (3) sky polarization patterns as a function of wavelength, calculated in this work from the ultra-violet to the near infra-red. To verify the performance of our model we generate accurate reference data using a numerical radiative transfer model and statistical comparisons between these two methods demonstrate no significant difference in almost all situations. The development of our analytical model provides a novel method for efficiently calculating the overhead skylight polarization pattern. This provides a new tool of particular relevance for our understanding of animals that use the celestial polarization pattern as a source of visual information.
机译:我们提出了一种计算上不昂贵的分析模型,用于模拟可变条件下的天极化模式。我们将Berry等人(2004 New J. Phys。6 162)的奇异性理论与Perez等人(1993 Sol。Energy 50 235-245)的强度模型结合在一起,使得我们的单个模型描述了三组关键数据: (1)极化度的架空分布以及天空中存在中性点; (2)天空极化的变化与大气浊度的关系; (3)从紫外到近红外计算得出的天空偏振模式与波长的关系。为了验证我们模型的性能,我们使用数值辐射传输模型生成了准确的参考数据,这两种方法之间的统计比较表明,在几乎所有情况下均没有显着差异。我们的分析模型的发展提供了一种新颖的方法,可以有效地计算高架天窗偏振图案。这为我们对使用天极化模式作为视觉信息源的动物的理解提供了特别相关的新工具。

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