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On the extinction of radiation by a homogeneous but spatially correlated random medium

机译:关于均匀但空间相关的随机介质对辐射的消光

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Exponential extinction of incoherent radiation intensity in a random medium (sometimes referred to as the Beer-Lambert law) arises early in the development of several branches of science and underlies much of radiative transfer theory and propagation in turbid media with applications in astronomy, atmospheric science, and oceanography. We adopt a stochastic approach to exponential extinction and connect it to the underlying Poisson statistics of extinction events. We then show that when a dilute random medium is statistically homogeneous but spatially correlated, the attenuation of incoherent radiation with depth is often slower than exponential. This occurs because spatial correlations among obstacles of the medium spread out the probability distribution of photon extinction events. Therefore the probability of transmission (no extinction) is increased.
机译:非相干辐射强度(有时被称为比尔-朗伯定律)的指数消灭是在科学的几个分支发展的早期出现的,它是辐射传递理论和在浑浊介质中传播的基础,并应用于天文学,大气科学和海洋学。我们采用随机方法来处理灭绝事件,并将其与灭绝事件的潜在泊松统计联系起来。然后,我们表明,当稀疏随机介质在统计上均一但在空间上相关时,不相干辐射随深度的衰减通常比指数慢。发生这种情况是因为介质的障碍物之间的空间相关性扩展了光子熄灭事件的概率分布。因此,传播的可能性(不灭绝)增加了。

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