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IMPROVED GAUSSIAN BEAM-SCATTERING ALGORITHM

机译:改进的高斯光束散射算法

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The localized model of the beam-shape coefficients for Gaussian beam-scattering theory by a spherical particle provides a great simplification in the numerical implementation of the theory. We derive an alternative form for the localized coefficients that is more convenient for computer computations and that provides physical insight into the details of the scattering process. We construct a FORTRAN program for Gaussian beam scattering with the localized model and compare its computer run time on a personal computer with that of a traditional Mie scattering program and with three other published methods for computing Gaussian beam scattering. We show that the analytical form of the beam-shape coefficients makes evident the fact that the excitation rate of morpholoy-dependent resonances is greatly enhanced for far off-axis incidence of the Gaussian beam. [References: 41]
机译:球形粒子对高斯光束散射理论的光束形状系数的局部化模型为该理论的数值实现提供了极大的简化。我们导出了局部系数的另一种形式,该形式更便于计算机计算,并提供了对散射过程细节的物理了解。我们使用本地化模型构建了一个用于高斯光束散射的FORTRAN程序,并将其在计算机上的运行时间与传统Mie散射程序的运行时间以及其他三种用于计算高斯光束散射的方法进行了比较。我们表明,光束形状系数的解析形式表明,对于高斯光束的远轴入射,与形态有关的共振的激发速率大大提高了。 [参考:41]

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