首页> 外文会议>International Workshop on Wave Propagation, Scattering and Emission(WPSE2003); 20030601-04; Shanghai(CN) >A Rigorous Analysis of Electromagnetic Scattering from Multilayered Crossed-arrays of Metallic Cylinders
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A Rigorous Analysis of Electromagnetic Scattering from Multilayered Crossed-arrays of Metallic Cylinders

机译:对金属圆柱的多层交叉阵列的电磁散射的严格分析

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摘要

Photonic crystals are regular arrays of dielectric materials with different refractive indices or discrete metallic objects. They are classified mainly into three categories that is one-dimensional, two-dimensional, and three-dimensional crystals according to the dimensionality of the stack. Since they are easy to fabricate and have some special properties, they not only have widely been used as frequency selective or polarization selective devices in microwaves and optical waves, but also are expected for new application. A typical structure of two-dimensional photonic crystals is formed by stacking periodic arrays constituted with infinitely long cylindrical objects. In the layered structure, the multiple interaction of space-harmonics scattered from each of array layers pronounces the frequency response and the photonic bandgaps are formed in which any electromagnetic wave propagation is forbidden within a fairly large frequency range.
机译:光子晶体是具有不同折射率或离散金属物体的介电材料的规则阵列。根据堆叠的尺寸,它们主要分为三类,即一维,二维和三维晶体。由于它们易于制造并具有某些特殊性能,因此它们不仅已广泛用作微波和光波中的频率选择或偏振选择装置,而且有望用于新的应用。二维光子晶体的典型结构是通过堆叠由无限长的圆柱体构成的周期阵列形成的。在分层结构中,从每个阵列层散射的空间谐波的多重相互作用表明了频率响应,并形成了光子带隙,其中在相当大的频率范围内禁止任何电磁波传播。

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