Dielectric slab reflection/transmission as a self-consistent radiation phenomenon.

J. Grzesik
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引用次数: 3

Abstract

We revisit the electromagnetic problem of wave incidence upon a uniform, dissipative dielectric slab of finite thickness. While this problem is easily solved via interface field continuity, we treat it under the viewpoint of radiative self-consistency, with interior current sources gauged by ohmic/polarization comparisons against those of the exterior medium. Radiative self-consistency yields an integral equation over the slab field giving a fully constructive buildup of the reflected/transmitted contributions, without any need for implicit determination via boundary conditions. Solution steps lead to an exact cancellation of the interior field, and bring in still other contributions of a reference medium variety, required to balance the incoming excitation. Such balancing provides the linear conditions for slab field determination. This two-step solution provides evidence of Ewald-Oseen extinction, even though the analytic framework here differs from the proofs available. We solve the balancing equations by vector manipulation without determinants, and then offer a boundary value confirmation in the special case of perpendicular incidence. In an appendix, we allow the the upper/lower half spaces to differ, the upper serving as reference and remote launch site of the incoming excitation. Effective currents now exist both within the slab and throughout an entire half space, necessitating a provision for cross-talk between slab and the radiating half space. The appendix provides an accelerated presentation of these generalized features, but stops short of an explicit field solution by reason of algebraic inflation. All logical details are however displayed in plain view. The self-consistency program is far more elegant and physically far more satisfying than the prevailing method of scattered fields guessed as to their structure and then fixed by boundary conditions.
介质板反射/传输作为自洽辐射现象。
我们重新讨论了有限厚度的均匀耗散介质板上的电磁波入射问题。虽然这个问题很容易通过界面场连续性来解决,但我们从辐射自洽的角度来处理它,通过欧姆/极化比较来测量内部电流源与外部介质的电流源。辐射自一致性产生了平板场上的积分方程,给出了反射/透射贡献的完全建设性累积,无需通过边界条件进行隐式确定。解的步骤导致内部场的精确消除,并引入了平衡入射激励所需的参考介质的其他贡献。这种平衡为板坯场的确定提供了线性条件。这个两步解提供了Ewald-Oseen灭绝的证据,尽管这里的分析框架与现有的证明不同。我们用不带行列式的矢量处理方法求解了平衡方程,并给出了垂直入射特殊情况下的边值确定。在附录中,我们允许上下半部分空间不同,上半部分作为输入激励的参考和远程发射点。有效电流现在既存在于板内,也存在于整个半空间内,因此需要在板和辐射半空间之间提供串扰。附录提供了这些广义特征的加速介绍,但由于代数膨胀的原因,没有给出显式的域解。然而,所有逻辑细节都以普通视图显示。自洽程序远比目前流行的散射场的结构猜测方法更优雅,在物理上也更令人满意,然后由边界条件固定。
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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