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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Scattering and absorption of light by ice particles: Solution by a new physical-geometric optics hybrid method
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Scattering and absorption of light by ice particles: Solution by a new physical-geometric optics hybrid method

机译:冰粒对光的散射和吸收:一种新的物理-几何光学混合方法的解决方案

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A new physical-geometric optics hybrid (PGOH) method is developed to compute the scattering and absorption properties of ice particles. This method is suitable for studying the optical properties of ice particles with arbitrary orientations, complex refractive indices (i.e., particles with significant absorption), and size parameters (proportional to the ratio of particle size to incident wavelength) larger than 20, and includes consideration of the edge effects necessary for accurate determination of the extinction and absorption efficiencies. Light beams with polygon-shaped cross sections propagate within a particle and are traced by using a beam-splitting technique. The electric field associated with a beam is calculated using a beam-tracing process in which the amplitude and phase variations over the wavefront of the localized wave associated with the beam are considered analytically. The geometric-optics near field for each ray is obtained, and the single-scattering properties of particles are calculated from electromagnetic integral equations. The present method does not assume additional physical simplifications and approximations, except for geometric optics principles, and may be regarded as a "benchmark" within the framework of the geometric optics approach. The computational time is on the order of seconds for a single-orientation simulation and is essentially independent of the size parameter. The single-scattering properties of oriented hexagonal ice particles (ice plates and hexagons) are presented. The numerical results are compared with those computed from the discrete-dipole-approximation (DDA) method.
机译:开发了一种新的物理-几何光学混合(PGOH)方法来计算冰粒的散射和吸收特性。此方法适用于研究具有大于20的任意方向,复杂的折射率(即具有明显吸收性的粒子)和尺寸参数(与粒径与入射波长之比成比例)的冰粒的光学特性,并应考虑以下因素:精确确定消光和吸收效率所需的边缘效应。具有多边形横截面的光束在粒子内传播,并使用分束技术进行跟踪。使用束跟踪过程计算与束相关的电场,其中分析地考虑与束相关的局部波在波前的幅度和相位变化。获得了每条射线的几何光学近场,并根据电磁积分方程计算了粒子的单散射特性。除了几何光学原理外,本方法不假设其他物理简化和近似,并且可以认为是几何光学方法框架内的“基准”。对于单方向模拟,计算时间约为秒,并且基本上与大小参数无关。给出了定向六角形冰粒(冰板和六角形)的单散射特性。将数值结果与通过离散偶极近似(DDA)方法计算得到的结果进行比较。

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