Mueller matrix calculation using Electric field Monte Carlo simulation
Journal
Proceedings of SPIE - The International Society for Optical Engineering
Journal Volume
11925
Date Issued
2021
Author(s)
Abstract
Understanding the propagating of light in biological tissues have long been an important issue. For this purpose, modeling scattering of light from laser radiation into turbid media has been studied. One of the common modeling tools is Monte Carlo simulation, and Mueller matrix method is a commonly used technique to study birefringence and depolarization properties of biological samples. Based on electric field Monte Carlo simulation in this paper, we present backscattering Muller matrix calculations for different size of particles and performed comparative studies. Our results may find important applications in laser tissue interaction. © COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only.
Subjects
Electric field Monte Carlo modeling; Monte Carlo simulation; Turbid media
SDGs
Other Subjects
Bioinformatics; Electric fields; Intelligent systems; Matrix algebra; Tissue; Turbidity; Biological tissues; Common models; Electric field monte carlo modeling; Matrix calculations; Modelling scattering; Modelling tools; Monte Carlo model; Monte Carlo's simulation; Mueller's matrices; Turbid media; Monte Carlo methods
Type
conference paper
