Intensity Distribution of Waves Transmitted Through a Multiple Scattering Medium
Th. M. Nieuwenhuizen, M. C. W. van Rossum

TL;DR
This paper analyzes the statistical distributions of transmitted wave intensities through multiple scattering media, revealing how these depend on the incoming beam profile and characterizing their decay behaviors.
Contribution
It introduces a method to calculate transmission distributions based on eigenvalue mappings, highlighting the influence of beam profile on these distributions.
Findings
Angular transmission distribution exhibits stretched exponential decay
Total transmission distribution grows log-normally and decays exponentially
Distribution functions depend on the incoming beam profile
Abstract
The distributions of the angular transmission coefficient and of the total transmission are calculated for multiple scattered waves. The calculation is based on a mapping to the distribution of eigenvalues of the transmission matrix. The distributions depend on the profile of the incoming beam. The distribution function of the angular transmission has a stretched exponential decay. The total-transmission distribution grows log-normally whereas it decays exponentially.
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