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Local cross-sections and energy efficiencies in the multiple electromagnetic/optical scattering by two perfect electrically-conducting cylindrical particles

机译:通过两个完美的导电圆柱颗粒的多电磁/光学散射中的局部横截面和能量效率

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摘要

Exact mathematical expressions for the intrinsic electromagnetic (EM) cross-sections (i.e. extinction, scattering and absorption) for a pair of perfectly conducting circular cylinders in a homogeneous non-absorptive medium are derived. The multipole expansion method in cylindrical coordinates and the translational addition theorem, applicable to any range of frequencies or particle sizes are used. An effective EM field, incident on the probed cylinder is defined first, which includes the initial and re-scattered field from the second cylinder. It is used jointly with the scattered field to derive the mathematical expressions for the intrinsic/local cross-sections. Numerical computations for the intrinsic extinction (or scattering) energy efficiencies per unit-length for a pair of conducting circular cylinders with different radii in a homogeneous medium are considered. The results computed a priori can be useful in the full characterization of a multiple scattering system of many particles, in conjunction with experimental data for the extrinsic cross-sections.
机译:衍生出一对完全导电圆柱体的固有电磁(EM)横截面(即消光,散射和吸收)的确切数学表达。使用适用于任何频率范围或粒度的圆柱坐标和翻译附加定理中的多极扩展方法。入射在探测圆筒上的有效EM场首先限定,其包括来自第二汽缸的初始和重新散射的场。它与散射场共同使用,以导出内部/局部横截面的数学表达式。考虑了在均匀介质中具有不同半径的一对具有不同半径的一对传导圆形圆柱的每个单位长度(或散射)能效的数值计算。结果计算了优先考虑许多颗粒的多个散射系统的完全表征,与外部横截面的实验数据结合。

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