Non-Monochromatic Electromagnetic Radiation of Inhomogeneous Media

N. N. Grinchik, V. G. Andrejev, G. Zayats, Yu. N. Grinchik
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引用次数: 3

Abstract

A coordinated physicomathematical model for the propagation of a soliton-like electromagnetic pulse in a heterogeneous medium is developed in the presence of strong discontinuities in the electromagnetic field. The model is based on the reduction of Maxwell’s equations to the well-studied wave equation. When the electromagnetic pulse was specified, its amplitude modulation was taken into account, as was the nonstationary broadening of the spectral line. Conditions for matching the momentum for the first initial boundary-value problem are obtained. The time dispersion of the electrical induction is taken into account in terms of the function of signal conditioning which takes account of the broadening of its spectral line and integration over the continuous spectrum. With this approach, it is not necessary to neglect spatial derivatives, and also to use spatial nonlocal relations to take account of the effect of surface charge, surface current, and spatial dispersion of electrical induction at the interfaces of adjacent media.
非均匀介质的非单色电磁辐射
在电磁场存在强不连续性的情况下,建立了类孤立子电磁脉冲在非均匀介质中传播的协调物理数学模型。该模型基于将麦克斯韦方程简化为研究充分的波动方程。当指定电磁脉冲时,它的幅度调制被考虑在内,谱线的非平稳加宽也是如此。得到了第一个初边值问题的动量匹配条件。根据信号调节的功能考虑了电感应的时间色散,该功能考虑了其谱线的加宽和在连续谱上的积分。使用这种方法,不必忽略空间导数,也不必使用空间非局部关系来考虑表面电荷、表面电流和相邻介质界面处感应的空间色散的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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