Scattering of a Gaussian beam by an array of circular conducting and dielectric cylinders

A. Elsherbeni, G. Tian, M. Hamid
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Abstract

The problem of scattering of a Gaussian beam from an array of parallel circular cylinders is discussed. The cylinders are made of homogeneous isotropic dielectric materials, or perfectly conducting materials, or a combination of both. An iterative scattering technique is developed to evaluate the near- and far-field components. The iterative technique starts with exact series representation of the initial scattered fields from each cylinder due to the incident Gaussian beam. Then, the sum of the initial scattered fields from all cylinders is considered to be an incident wave on each individual cylinder. An additional scattered field contribution is then obtained and successive scattering can take place until the boundary conditions on the surface of every cylinder are satisfied. Transverse electric and transverse magnetic polarized waves are considered, and the effects of the incident beam parameters on the far scattered field pattern are investigated.<>
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高斯光束在导电和介电圆柱体阵列中的散射
讨论了平行圆柱阵列中高斯光束的散射问题。圆柱体由均匀各向同性介质材料或完美导电材料或两者的组合制成。提出了一种迭代散射技术来评估近场和远场分量。迭代技术从精确的序列表示每个圆柱体由于入射高斯光束产生的初始散射场开始。然后,将来自所有圆柱体的初始散射场的总和视为每个单独圆柱体上的入射波。这样就得到了一个额外的散射场贡献,并且可以进行连续的散射,直到满足每个圆柱体表面的边界条件。考虑了横向电极化波和横向磁极化波,研究了入射光束参数对远散射场图的影响。
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