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      Multiple scattering and diffusion of scalar coherent waves in a group of small spheroidal particles with random orientations

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          Abstract

          In this manuscript we study multiple scattering and diffusion of scalar wave in a group of monodisperse spheroidal particles with random orientations. We begin by fixing a spheroid in a prolate spheroidal coordinate system, and attain the expansion of the scalar Green's function in this space. The expansion is firstly based on spheroidal wave functions, and then we transform it into the expansion of spherical wave functions. Next, we average the Green's function over the orientations of the spheroid to get the averaged transition operator. Finally, we calculate the transport mean free path and anisotropy factor for the spheroidal particles group, based on the irreducible vertex in the Bethe-Salpeter equation. The approaches to get the average transition operator and the mean free paths in this manuscript will be of benefit to the research area of multiple scattering by non-spherical particles.

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          Author and article information

          Journal
          07 July 2024
          Article
          2407.05567
          5c9d15a5-2340-4ff5-bf5d-7a0271d00174

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          18 pages, 3 figures
          physics.optics

          Optical materials & Optics
          Optical materials & Optics

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