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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Complete photonic band gaps in one-dimensional ternary photonic crystals containing single negative materials
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Complete photonic band gaps in one-dimensional ternary photonic crystals containing single negative materials

机译:包含单一负材料的一维三元光子晶体中的完整光子带隙

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摘要

Complete photonic band gaps (PBGs) are found in one-dimensional ternary photonic crystals (1D TPCs) composed of an ordinary dielectric and single negative metamaterials. The proposed TPC gives omni directional PBG completely independent of polarizations dependent weekly on angle of incidence. Here the choice of different parameters of TPC is done in such a way so that it eliminates the Brewster's-angle transmission resonance, thus allowing a complete 3D PBG. It exhibits a photonic band or gap near frequencies where either the magnetic permeability or the electric permittivity of the metamaterial changes sign, whose width increases with the increasing angle of incidence. These result from the dispersive properties of the metamaterials and disappear for the particular case of propagation along the stratification direction. The results are discussed in terms of incident angle, layer thickness, dielectric constant of the dielectric material for TE and TM polarizations.
机译:在由普通电介质和单个负超材料构成的一维三元光子晶体(1D TPC)中发现了完整的光子带隙(PBG)。拟议的TPC使全向PBG完全独立于每周取决于入射角的极化。在这里,TPC不同参数的选择是这样进行的,即它消除了布鲁斯特角传输共振,从而实现了完整的3D PBG。它在频率附近显示出一个光子带或隙,其中超材料的磁导率或介电常数会改变符号,其宽度随入射角的增加而增加。这些是由超材料的分散特性引起的,对于沿分层方向传播的特殊情况,这些消失。就入射角,层厚度,电介质材料对TE和TM极化的介电常数进行了讨论。

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