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Application of the symplectic finite-difference time-domain method to light scattering by small particles

机译:辛有限差分时域方法在小颗粒光散射中的应用

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A three-dimensional fourth-order finite-difference time-domain (FDTD) program with a symplectic integrator scheme has been developed to solve the problem of light scattering by small particles. The symplectic scheme is nondissipative and requires no more storage than the conventional second-order FDTD scheme. The total-field and scattered-field technique is generalized to provide the incident wave source conditions in the symplectic FDTD (SFDTD) scheme. The perfectly matched layer absorbing boundary condition is employed to truncate the computational domain. Numerical examples demonstrate that the fourth-order SFDTD scheme substantially improves the precision of the near-field calculation. The major shortcoming of the fourth-order SFDTD scheme is that it requires more computer CPU time than a conventional second-order FDTD scheme if the same grid size is used. Thus, to make the SFDTD method efficient for practical applications, one needs to parallelize the corresponding computational code.
机译:为了解决小颗粒的光散射问题,开发了具有辛积分器方案的三维四阶有限差分时域(FDTD)程序。辛方案是非耗散的,并且不需要比传统的二阶FDTD方案更多的存储。概述了总场和散射场技术,以提供辛FDTD(SFDTD)方案中的入射波源条件。采用完全匹配的层吸收边界条件来截断计算域。数值示例表明,四阶SFDTD方案大大提高了近场计算的精度。四阶SFDTD方案的主要缺点是,如果使用相同的网格大小,则与传统的二阶FDTD方案相比,它需要更多的计算机CPU时间。因此,为了使SFDTD方法对于实际应用有效,需要并行化对应的计算代码。

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