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Z-Transform-Based FDTD Analysis of Perfectly Conducting Cylinder Covered With Unmagnetized Plasma

机译:基于Z变换的未磁化等离子体覆盖的导电圆柱的FDTD分析

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摘要

In this paper, a novel and normalized Z-transform-based finite-difference time-domain (ZTFDTD) method is presented for simulating the interaction of the electromagnetic (EM) wave with unmagnetized plasma. The 2-D ZTFDTD formulations for unmagnetized plasma are derived. Using a simplified 2-D model for a perfectly conducting cylinder covered with unmagnetized plasma, the stealth effect of unmagnetized plasma is studied in different thicknesses of plasma, electron densities of plasma, EM wave frequencies, and plasma collision frequencies. Numerical results indicate that plasma stealth is effective in theory and reasonable selection for the plasma parameters can greatly enhance its effectiveness
机译:本文提出了一种新颖且标准化的基于Z变换的有限差分时域(ZTFDTD)方法,用于模拟电磁波(EM)与未磁化等离子体的相互作用。推导了用于未磁化等离子体的二维ZTFDTD配方。使用简化的二维模型对覆盖有未磁化等离子体的完美导电圆柱体进行了研究,研究了在不同厚度的等离子体,等离子体的电子密度,电磁波频率和等离子体碰撞频率下,未磁化等离子体的隐身效应。数值结果表明,等离子体隐身在理论上是有效的,合理选择等离子体参数可以大大提高其有效性。

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