Tzabari Masada, Lin Wushao, Lerner Amit, Iluz David, Haspel Carynelisa
Appl Opt. 2019 Sep 10;58(26):7258-7279. doi: 10.1364/AO.58.007258.
The influence of hydrosol nonsphericity on the polarization characteristics of light under water is investigated by combining accurate single-scattering models for randomly oriented spheroidal scatterers with a radiative transfer model that employs Stokes formalism and considers refraction of direct unpolarized solar radiation and 100% linearly polarized radiation at the air-water interface followed by single scattering. Variations in what we call the "linear polarization phase function" (the degree of linear polarization as a function of scattering angle and the angle of linear polarization as a function of scattering angle) are examined for a wide range of spheroid aspect ratios and complex refractive indices of hydrosols. Implications for polarization-sensitive marine organisms and for remote sensing of the marine environment are discussed.
通过将随机取向的椭球形散射体的精确单次散射模型与采用斯托克斯形式主义的辐射传输模型相结合,研究了水溶胶非球形度对水下光偏振特性的影响。该辐射传输模型考虑了直接非偏振太阳辐射和在空气 - 水界面处100%线偏振辐射的折射,随后进行单次散射。针对广泛的椭球体纵横比和水溶胶复折射率,研究了我们所谓的“线性偏振相位函数”(线性偏振度作为散射角的函数以及线性偏振角作为散射角的函数)的变化。讨论了对偏振敏感的海洋生物以及海洋环境遥感的影响。