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Investigation on the properties of omnidirectional photonic band gaps in two-dimensional plasma photonic crystals

机译:二维等离子体光子晶体中全向光子带隙的性质研究

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摘要

The properties of omnidirectional photonic band gaps (OBGs) in two-dimensional plasma photonic crystals (2D PPCs) are theoretically investigated by the modified plane wave expansion method. In the simulation, we consider the off-plane incident wave vector. The configuration of 2D PPCs is the triangular lattices filled with the nonmagnetized plasma cylinders in the homogeneous and isotropic dielectric background. The calculated results show that the proposed 2D PPCs possess a flatbands region and the OBGs. Compared with the OBGs in the conventional 2D dielectric-air PCs, it can be obtained more easily and enlarged in the 2D PPCs with a similar structure. The effects of configurational parameters of the PPCs on the OBGs also are studied. The simulated results demonstrate that the locations of OBGs can be tuned easily by manipulating those parameters except for changing plasma collision frequency. The achieved OBGs can be enlarged by optimizations. The OBGs of two novel configurations of PPCs with different cross sections are computed for a comparison. Both configurations have the advantages of obtaining the larger OBGs compared with the conventional configuration, since the symmetry of 2D PPCs is broken by different sizes of periodically inserted plasma cylinders or connected by the embedded plasma cylinders with thin veins. The analysis of the results shows that the bandwidths of OBGs can be tuned by changing geometric and physical parameters of such two PPCs structures. The theoretical results may open a new scope for designing the omnidirectional reflectors or mirrors based on the 2D PPCs. (C) 2016 AIP Publishing LLC.
机译:通过改进的平面波扩展方法,从理论上研究了二维等离子光子晶体(2D PPC)中的全向光子带隙(OBG)的特性。在仿真中,我们考虑了平面外入射波矢量。 2D PPC的配置是在均质和各向同性电介质背景下充满非磁化等离子体圆柱体的三角形晶格。计算结果表明,提出的二维PPC具有平坦区域和OBG。与常规2D介电空气PC的OBG相比,它更容易获得,并且在具有类似结构的2D PPC中也可以放大。还研究了PPC的配置参数对OBG的影响。仿真结果表明,除改变等离子体碰撞频率外,通过操纵这些参数可以轻松地调节OBG的位置。可以通过优化扩大获得的OBG。计算两种具有不同横截面的PPC新颖配置的OBG,以进行比较。与常规结构相比,这两种结构均具有获得更大OBG的优势,因为2D PPC的对称性被周期性插入的等离子圆柱体的不同尺寸所破坏,或者通过具有细静脉的嵌入式等离子圆柱体相连接。结果分析表明,可以通过改变这两种PPC结构的几何和物理参数来调整OBG的带宽。理论结果可能会为基于2D PPC的全向反射器或反射镜设计开辟新的领域。 (C)2016 AIP出版有限责任公司。

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