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Broad-Band Transmission Characteristics of Polarizations in Foggy Environments

机译:有雾环境中极化的宽带传输特性

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Based on the Monte Carlo (MC) algorithm, we simulate the evolutions of different types of the polarized lights in the broad-band range from visible to infrared in foggy environments. Here, we have constructed two scattering systems to simulate the transmission characteristics of the polarized lights: (1) A monodisperse system based on five types of particles with the sizes of 0.5, 1.0, 2.5, 4, and 5 μm, respectively; (2) a polydisperse system based on scattering particles with a mean value (size) of 2.0 μm. Our simulation results show that linearly polarized light (LPL) and circularly polarized light (CPL) exhibit different advantages in different wavelengths and different scattering systems. The polarization maintenances (PM) of the degree of circular polarizations (DoCPs) are better than those of the degree of linear polarizations (DoLPs) for most incident wavelengths. CPL is not superior to LPL in the strong-absorption wavelengths of 3.0μm, 6.0μm, and long infrared. Here, when the wavelength is closer to the particle sizes in a system, the influence on propagating polarizations will be more obvious. However, the difference in the degree of polarization (DoP) between the resulting CPL and LPL is positive at these points, which means the penetrating ability of CPL is superior to that of LPL in these scattering systems. We have also simulated the extinction efficiency Q ext and the scattering index ratio Q ratio as functions of both wavelength and particle size for analyzing polarization’s transmission characteristics. Our work paves the way of selecting the optimal incident wavelengths and polarizations for concrete scattering systems.
机译:基于蒙特卡洛(MC)算法,我们在有雾的环境中模拟了从可见光到红外光的宽带范围内不同类型偏振光的演化。在这里,我们构建了两个散射系统来模拟偏振光的透射特性:(1)基于五种类型的颗粒的单分散系统,分别具有0.5、1.0、2.5、4和5μm的大小; (2)基于分散颗粒的多分散体系,其平均值(尺寸)为2.0μm。我们的仿真结果表明,线性偏振光(LPL)和圆偏振光(CPL)在不同的波长和不同的散射系统中显示出不同的优势。对于大多数入射波长,圆偏振度(DoCP)的偏振维持(PM)优于线性偏振度(DoLP)的偏振维持。 CPL在3.0μm,6.0μm和长红外的强吸收波长方面不优于LPL。在此,当波长接近系统中的粒径时,对传播偏振的影响将更加明显。但是,在这些点上,所得CPL和LPL之间的偏振度(DoP)差异为正,这意味着在这些散射系统中CPL的穿透能力优于LPL。我们还模拟了消光效率Q ext和散射指数比Q ratio作为波长和粒径的函数,以分析偏振的透射特性。我们的工作为混凝土散射系统选择最佳入射波长和偏振铺平了道路。

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