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Measurement of the reflection-polarization pattern of the flat water surface under a clear sky at sunset

机译:日落时晴空下平坦水面的反射偏振模式的测量

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Using 180 degrees field of view imaging polarimetry, we measured the polarization characteristics (degree and angle of linear polarization) of the entire clear sunset sky and the reflection-polarization pattern of the flat water surface under this sky in order to test the validity of the earlier theoretical predictions made by Horvath, G. (1995) [Reflection-polarization patterns at flat water surfaces and their relevance for insect polarization vision. Journal of Theoretical Biology, 175, 27-37] and Schwind, R., & Horvath, G. (1993) [Reflection-polarization pattern at water surfaces and correction of a common representation of the polarization pattern of the sky, Naturwissenschaften, 80, 82-83] on the fine structure of this reflection-polarization pattern. We compared the measured reflection-polarization pattern with the theoretical reflection-polarization patterns computed for single-scattering Rayleigh skylight and measured real skylight reflected from the flat water surface, the repolarization characteristics of which are described by the Fresnel theory. Analysing and comparing the theoretical and measured reflection-polarization patterns, we could establish that the earlier predictions of Horvath (1995) and Schwind and Horvath (1993) were correct. Contrary to other full-sky polarimeters, our 180 degrees field of view rotating-analyzer imaging photopolarimeter is useful not only for sky measurements, but also for downward viewing polarimetry. It can be used in atmospheric optics as well as in biological investigations involving animal polarization vision and orientation on the basis of skylight polarization or water-surface-reflected polarized light. Q 2001 Elsevier Science Inc. All rights reserved. [References: 21]
机译:使用180度视场成像偏振仪,我们测量了整个晴朗日落天空的偏振特性(线性偏振的度和角度)和在此天空下平坦水面的反射偏振模式,以测试该偏振计的有效性。 Horvath,G.(1995)提出的较早的理论预测[平坦水面的反射偏振模式及其与昆虫偏振视觉的相关性。 The Journal of Theoretical Biology,175,27-37]和Schwind,R.,&Horvath,G.(1993)[水表面的反射偏振模式和天空偏振模式的常见表示的校正,Naturwissenschaften,80 ,[82-83]。我们将测得的反射偏振模式与为单散射瑞利天窗计算的理论反射偏振模式以及从平坦水面反射的实际真实天光进行了比较,其再偏振特性由菲涅耳理论描述。通过分析和比较理论和测量的反射偏振模式,我们可以确定Horvath(1995)以及Schwind and Horvath(1993)的早期预测是正确的。与其他全天空旋光仪相反,我们的180度视场旋转分析仪成像光旋光仪不仅可用于天空测量,而且还可用于下视偏振仪。它可用于大气光学以及基于天光偏振或水表面反射偏振光的涉及动物偏振视觉和方向的生物学研究。 Q 2001 Elsevier Science Inc.保留所有权利。 [参考:21]

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