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Electromagnetic Scattering Characteristics of PEC Targets in the Terahertz Regime

机译:太赫兹条件下PEC目标的电磁散射特性

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Electromagnetic (EM) scattering characteristics of perfectly electrical conducting (PEC) targets in the terahertz (THz) frequency range are investigated through the use of ray-based high-frequency EM techniques. These techniques include the methods of shooting and bouncing rays (SBR), and the truncated-wedge incremental-length diffraction coefficients (TW-ILDCs). The EM fields associated with each ray are tracked and computed, based on the principle of Physical Optics (PO) and/or Geometrical Optics (GO). The total field scattered from the PEC target is then obtained by summing up the EM contributions of each ray and each illuminated edge. In contrast to previously reported applications, these methods are combined together to solve three-dimensional (3D) scattering problems in the THz region. Due to the use of analytical formulas of Physical Optics and the truncated-wedge incremental-length diffraction coefficients method, the consideration of the multi-reflection effect in shooting and bouncing rays, and partially accounting for the second-order edge-diffraction effects in the truncated-wedge incremental-length diffraction coefficients method, we obtain an extremely efficient algorithm for studying THz scattering. It has excellent agreement with an accurate integral solver, the Multilevel Fast Multipole Algorithm (MLFMA), which cannot be used in handling large-scale THz problems. Both mono- and bistatic radar cross sections (RCS) of several PEC objects in the THz band are given to show the correctness and reliability of the asymptotic methods. The EM scattering characteristics of such targets in the THz region are analyzed. Great differences of the target characteristics between the THz and GHz regimes are observed and discussed.
机译:通过使用基于射线的高频EM技术,研究了太赫兹(THz)频率范围内完美导电(PEC)目标的电磁(EM)散射特性。这些技术包括发射和反射射线的方法(SBR),以及楔形渐增长度衍射系数(TW-ILDCs)。基于物理光学(PO)和/或几何光学(GO)的原理,跟踪和计算与每个射线关联的EM场。然后,通过将每条光线和每个照明边缘的EM贡献相加得出从PEC目标散射的总场。与以前报道的应用程序相比,这些方法结合在一起解决了THz区域中的三维(3D)散射问题。由于使用了“物理光学”的解析公式和“楔形增量长度衍射系数”方法,因此考虑了拍摄和反射光线中的多重反射效应,并部分考虑了光学中的二阶边缘衍射效应。截断楔形增量长度衍射系数方法,我们获得了一种非常有效的算法,用于研究THz散射。它与精确的积分求解器,多级快速多极子算法(MLFMA)有着极好的协议,后者不能用于处理大规模太赫兹问题。给出了太赫兹频带中几个PEC对象的单,双基地雷达横截面(RCS),以证明渐近方法的正确性和可靠性。分析了这种靶在太赫兹区域的电磁散射特性。观察和讨论了THz和GHz模式之间目标特性的巨大差异。

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