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There's plenty of light at the bottom: statistics of photon penetration depth in random media

机译:底部有很多光线:随机介质中光子穿透深度的统计数据

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摘要

We propose a comprehensive statistical approach describing the penetration depth of light in random media. The presented theory exploits the concept of probability density function f(z|ρ, t) for the maximum depth reached by the photons that are eventually re-emitted from the surface of the medium at distance ρ and time t. Analytical formulas for f, for the mean maximum depth 〈zmax〉 and for the mean average depth reached by the detected photons at the surface of a diffusive slab are derived within the framework of the diffusion approximation to the radiative transfer equation, both in the time domain and the continuous wave domain. Validation of the theory by means of comparisons with Monte Carlo simulations is also presented. The results are of interest for many research fields such as biomedical optics, advanced microscopy and disordered photonics.
机译:我们提出了一种综合的统计方法来描述光在随机介质中的穿透深度。提出的理论利用了概率密度函数f(z |ρ,t)的概念,即光子到达的最大深度,这些光子最终在距离ρ和时间t处从介质表面重新发出。在扩散近似于辐射传递方程的框架内,得出了f,平均最大深度thezmax〉和检测到的光子在扩散板表面达到的平均平均深度的解析公式域和连续波域。还提出了通过与蒙特卡洛模拟的比较对理论的验证。该结果对于许多研究领域都是令人感兴趣的,例如生物医学光学,高级显微镜和无序光子学。

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