用拉盖尔-高斯波束测量完美电磁导体圆柱体的雷达截面(RCS)

A. M., Ghaffar A., Naz M.Y., Hanif M. A.
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引用次数: 7

摘要

研究了理想电磁导体(PEMC)圆柱体在入射拉盖尔-高斯光束作用下的雷达截面(RCS)。利用LG波束势函数展开入射和散射电磁场分量。通过在界面处应用PEMC边界条件,即𝑟=𝑎来确定共极化和交叉极化散射场系数。得到的共极化和交叉极化散射场分量值有助于确定散射场的分布。我们对光束模式𝑝=0,𝑙=0,即𝐿𝐺00的基本LG光束的PEMC和PMC结果的比较与已发表的研究成果的高斯光束散射一致。分析了OAM模态指数(𝑙)、束腰半径(𝑤0)和PEMC圆柱半径对RCS的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radar Cross Section (RCS) of perfect electromagnetic conductor (PEMC) cylinder by a Laguerre–Gaussian beam
Radar Cross Section (RCS) of perfect electromagnetic conductor (PEMC) cylinder using an incident Laguerre–Gaussian (LG) beam has been investigated. LG beam potential function is used to expand the incident and scattered electromagnetic (EM) field components. The co- and cross-polarized scattered field coefficients are determined by applying the PEMC boundary conditions at the interface i.e., 𝑟=𝑎. The obtained values for co- and cross-polarized scattered field components would be helpful to find out the scattered field distribution. A comparison of our results for PEMC and PMC for fundamental LG beam with beam mode 𝑝=0, 𝑙=0, i.e., 𝐿𝐺00 match with the gaussian beam scattering as witnessed in published work. The effects of OAM mode index (𝑙), beam waist radius (𝑤0), and PEMC cylinder radius on RCS have been analyzed.
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来源期刊
Kuwait Journal of Science & Engineering
Kuwait Journal of Science & Engineering MULTIDISCIPLINARY SCIENCES-
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