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Full-wave solution of short impulses in inhomogeneous plasma

机译:非均质等离子体中短脉冲的全波解

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In this paper the problem of real impulse propagation in arbitrarily inhomogeneous media will be presented on a fundamentally new, general, theoretical way. The general problem of wave propagation of monochromatic signals in inhomogeneous media was enlightened in. The earlier theoretical models for spatial inhomogeneities have some errors regarding the structure of the resultant signal originated from backward and forward propagating parts. The application of the method of inhomogeneous basic modes (MIBM) and the complete full-wave solution of arbitrarily shaped non-monochromatic plane waves in plasmas made it possible to obtain a better description of the problem, on a fully analytical way, directly from Maxwell's equations. The model investigated in this paper is inhomogeneous of arbitrary order (while the wave pattern can exist), anisotropic (magnetized), linear, cold plasma, in which the gradient of the one-dimensional spatial inhomogeneity is parallel to the direction of propagation.
机译:在本文中,将以一种全新的,通用的,理论上的方式来介绍在任意非均匀介质中实际脉冲传播的问题。单色信号在不均匀介质中传播的一般问题得到了启发。早期的空间不均匀性理论模型对于源自后向传播部分的合成信号的结构存在一些误差。非均质基本模式(MIBM)方法的应用以及等离子体中任意形状的非单色平面波的完整全波解决方案,使得有可能直接从麦克斯韦方程组中以完全分析的方式更好地描述问题。方程。本文研究的模型是任意阶的非均质(虽然可以存在波型),各向异性(磁化),线性,冷等离子体,其中一维空间非均质性的梯度与传播方向平行。

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