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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Time-domain electromagnetic plane waves in static and dynamic conducting media. I
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Time-domain electromagnetic plane waves in static and dynamic conducting media. I

机译:静态和动态传导介质中的时域电磁平面波。一世

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Solutions are derived for the time-domain Maxwell equations for static (J=/spl sigma/E) and dynamic (/spl tau//spl part///spl part/t+J= /spl sigma//sub 0/E) conducting media where the field is assumed to vary with respect to only one spatial direction, i.e., plane-wave propagation. The plane wave is introduced into the media via the imposition of an electric field boundary condition at the plane boundary of a half-space and it is assumed that the fields inside the half-space are initially zero. Solutions are derived directly from the first-order system of partial differential equations and it is shown that once the electric field at the plane boundary is imposed, the magnetic field is automatically determined for causal solutions. It is shown that the form of the Maxwell equations, without a magnetic conductivity term added, is sufficient to allow well and uniquely defined solutions of this problem.
机译:得出时域Maxwell方程的静态(J = / spl sigma / E)和动态(/ spl tau // spl part /// spl part / t + J = / spl sigma // sub 0 / E的解)传导介质,假定场仅相对于一个空间方向(即平面波传播)变化。通过在半空间的平面边界处施加电场边界条件,将平面波引入介质,并假定半空间内部的场最初为零。解直接从偏微分方程的一阶系统中导出,结果表明,一旦施加了平面边界处的电场,就会自动确定因果关系的磁场。结果表明,不加磁导率项的麦克斯韦方程组的形式足以允许很好地且唯一地定义该问题。

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