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Electromagnetic-wave propagation along curved surfaces

机译:电磁波沿曲面传播

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摘要

We show that Maxwell's equations for a nonmagnetic, isotropic, but electrically inhomogeneous medium in the absence of charges or current sources lead to a wave equation governing surface electromagnetic wave propagation along a general curved, smooth surface which, when recasted using an appropriate choice of curvilinear coordinates u~1 , u~2, u~3, can be fully separated in the spatial dimensions. It is shown that surface electromagnetic wave solutions decay exponentially away from the surface (along the u~3 coordinate) with the same decay rate independent of the shape of the surface. Transmission and reflection coefficients governing scattering of electromagnetic waves on a varying surface shape are derived. Two test cases of a Gaussian-shaped and a sinusoidal-shaped surface are solved in details and discussed numerically in terms of transmission and reflection coefficients including dependencies on surface-shape parameters in the wavelength range 250-750 nm. The present method for determining surface electromagnetic wave propagation along complex-shaped metal-dielectric surfaces allows better insight into the importance of surface geometry as well as considerably faster computational speeds than those provided by standard numerical methods.
机译:我们表明,在没有电荷或电流源的情况下,对于非磁性,各向同性但电非均匀介质的麦克斯韦方程,导致了一个控制着表面电磁波沿一般弯曲光滑表面传播的波动方程,当使用适当的曲线选择对其进行重铸时坐标u〜1,u〜2,u〜3可以在空间维度上完全分开。结果表明,表面电磁波解以相同的衰减率从表面(沿u〜3坐标)呈指数衰减,而与表面的形状无关。得出控制电磁波在变化的表面形状上的散射的透射系数和反射系数。详细地解决了两个高斯形和正弦形表面的测试案例,并在透射和反射系数方面进行了数值讨论,包括在250-750 nm波长范围内对表面形状参数的依赖性。用于确定沿着复杂形状的金属电介质表面传播的表面电磁波的本方法可以更好地了解表面几何形状的重要性,并且比标准数值方法所提供的计算速度快得多。

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