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Geometrical-optics approximation of forward scattering by qradient-index spheres

机译:q折射率球体的正向散射的几何光学近似

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摘要

By means of geometrical optics we present an approximation method for acceleration of the computation of the scattering intensity distribution within a forward angular range (0-60°) for gradient-index spheres illuminated by a plane wave. The incident angle of reflected light is determined by the scattering angle, thus improving the approximation accuracy. The scattering angle and the optical path length are numerically integrated by a general-purpose integrator. With some special index models, the scattering angle and the optical path length can be expressed by a unique function and the calculation is faster. This method is proved effective for transparent particles with size parameters greater than 50. It fails to give good approximation results at scattering angles whose refractive rays are in the backward direction. For different index models, the geometrical-optics approximation is effective only for forward angles, typically those less than 60° or when the refractive-index difference of a particle is less than a certain value.
机译:借助几何光学,我们提出了一种近似方法,用于加速计算平面波照射的渐变折射率球体在正向角度范围(0-60°)内的散射强度分布。反射光的入射角由散射角决定,从而提高了近似精度。散射角和光程长度由通用积分器在数值上积分。使用某些特殊的指数模型,可以通过独特的函数表示散射角和光程长度,并且计算速度更快。事实证明,该方法对尺寸参数大于50的透明粒子有效。在折射角朝后的散射角上,无法给出良好的近似结果。对于不同的折射率模型,几何光学近似仅对正向角有效,通常小于60°,或者当粒子的折射率差小于某个值时。

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