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首页> 外文期刊>Geophysical Research Letters >The Ring effect in skylight polarisation
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The Ring effect in skylight polarisation

机译:天光偏振的环形效应

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摘要

Skylight reflectivity and polarisation spectra across the ultraviolet (UV) and visible (VIS) wavelength range show abundant features coinciding with solar Fraunhofer lines. Although the appearance of these features in reflectivity spectra has been shown to be caused by rotational Raman scattering by atmospheric molecules, quantitative modelling of this so-called Ring effect as observed in polarisation spectra of scattered sunlight is still lacking. Accurate modelling of UV-VIS radiances and polarisation at high-spectral resolution has, however, become increasingly important because of the increased use of high-spectral resolution spectrophotometers, that are often highly polarisation sensitive. In this paper, we present high-spectral resolution skylight polarisation spectra and show that the Ring effect in these spectra can be simulated using a radiative transfer program that includes rotational Raman scattering up to the second order of scattering. [References: 32]
机译:紫外线(UV)和可见光(VIS)波长范围内的天光反射率和偏振光谱显示出与太阳Fraunhofer线重合的丰富特征。尽管已显示出反射光谱中这些特征的出现是由于大气分子的旋转拉曼散射引起的,但仍缺乏对在散射日光的偏振光谱中观察到的所谓的环效应的定量建模。但是,由于对高偏振分辨率敏感的高光谱分辨率分光光度计的使用增加,因此在高光谱分辨率下对UV-VIS辐射和偏振进行精确建模变得越来越重要。在本文中,我们提出了高光谱分辨率的天光偏振光谱,并表明可以使用辐射转移程序模拟这些光谱中的环效应,该程序包括旋转拉曼散射直至第二阶散射。 [参考:32]

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