• Acta Photonica Sinica
  • Vol. 50, Issue 1, 203 (2021)
Wendi HE1, Miao HU1、2, Peng LI2、3, Conggao HUANG1, Pinghui ZHANG1, Mengmeng XU1, Xuefang ZHOU1, Guowei YANG1, Yang LU1, and Meihua BI1
Author Affiliations
  • 1College of Communication Engineering, Hangzhou Dianzi University, Hangzhou3008,China
  • 2State Key Laboratory of Nuclear Biochemistry Protection for Civilian, Beijing1005, China
  • 3Research Institute of Chemical Defense, Beijing102205, China
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    DOI: 10.3788/gzxb20215001.0101001 Cite this Article
    Wendi HE, Miao HU, Peng LI, Conggao HUANG, Pinghui ZHANG, Mengmeng XU, Xuefang ZHOU, Guowei YANG, Yang LU, Meihua BI. Experimental and Simulation Study of Laser Side Scattering in Turbid Media[J]. Acta Photonica Sinica, 2021, 50(1): 203 Copy Citation Text show less

    Abstract

    The Monte Carlo model of laser scattering in turbid media was established with the help of scattering angle from the cumulative probability density interpolating of the Mie scattering phase function. With the model, the laser multiple scattering in uniform monodisperse polystyrene turbid medium was studied, the influence of turbid media with different optical depths and scattering phase function on laser multiple scattering was explored. By controlling the concentration of 5 μm and 10 μm size polystyrene particles, changing the optical depths of the turbid medium as 2, 5 and 8, the theoretical simulation and experimental side scattering images were obtained and compared. The percentage difference of scattering light intensity attenuation between the simulation and experiment is measured less than 16% under the same medium condition, and the trend of them is basically the same. The simulation can also provide the distribution of light intensity of different scattering orders, and accurately analyze the influence of multiple scattering.
    Wendi HE, Miao HU, Peng LI, Conggao HUANG, Pinghui ZHANG, Mengmeng XU, Xuefang ZHOU, Guowei YANG, Yang LU, Meihua BI. Experimental and Simulation Study of Laser Side Scattering in Turbid Media[J]. Acta Photonica Sinica, 2021, 50(1): 203
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