J Opt Soc Am A Opt Image Sci Vis. 2023 Mar 1;40(3):502-509. doi: 10.1364/JOSAA.476497.
We implement an algorithm, termed parallel-processing physical optics, providing an efficient high-frequency approximation method to characterize the scattering of Laguerre-Gaussian (LG) vortex electromagnetic (EM) beams by electrically large-scaled complex targets. The incident beam is described by vector expressions in terms of electric and magnetic fields, and it is combined with rotation Euler angles to achieve an arbitrary incidence of the vortex beam. The validity and capability of the proposed method are illustrated numerically, and the effects of various beam parameters as well as target geometric models such as a blunt cone and Tomahawk-A missile on monostatic and bistatic radar cross section distributions are investigated. Results show that the scattering features of the vortex beam vary significantly with the parameters of the vortex beam and the target. These results are helpful to reveal the scattering mechanism of LG vortex EM beams and provide a reference for the application of vortex beams to detect electrically large-scaled targets.
我们实现了一种算法,称为并行处理物理光学法,为描述由电大尺寸复杂目标散射的拉盖尔-高斯(LG)涡旋电磁(EM)光束提供了一种有效的高频近似方法。入射光束用电场和磁场的矢量表达式描述,并结合旋转欧拉角实现了涡旋光束的任意入射。所提出方法的有效性和能力通过数值进行了说明,并研究了各种光束参数以及钝锥和 Tomahawk-A 导弹等目标几何模型对单站和双站雷达散射截面分布的影响。结果表明,涡旋光束的散射特征随光束和目标的参数变化显著。这些结果有助于揭示 LG 涡旋 EM 光束的散射机制,并为将涡旋光束应用于检测电大尺寸目标提供参考。