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The properties of photonic band gaps for three-dimensional tunable photonic crystals with simple-cubic lattices doped by magnetized plasma

机译:磁化等离子体掺杂的具有简单立方晶格的三维可调光子晶体的光子带隙性质

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摘要

In this paper, the properties of photonic band gaps (PBGs) for two types of three-dimensional magnetized plasma photonic crystals (MPPCs) composed of homogeneous magnetized plasma and dielectric with simple-cubic lattices are theoretically investigated based on a modified plane wave expansion (PWE) method, as incidence electromagnetic (EM) wave vector is parallel to the external magnetic field. The equations for calculating the band diagrams in the first irreducible Brillouin zone of two types of photonic crystals (dielectric spheres immersed in magnetized plasma background or vice versa), are theoretically deduced. The influences of dielectric constant of dielectric, plasma collision frequency, filling factor, the external magnetic field and plasma frequency on the properties of PBGs for both types of MPPCs are discussed in detail, respectively, and some corresponding physical explanations are also given. The characteristics of flatbands region are also discussed. From the numerical results, it has been shown that not only the bandwidths but also the relative bandwidths of the PBGs for both types of three-dimensional MPPCs can be manipulated by the plasma frequency, filling factor, external magnetic field and relative dielectric constant of dielectric, respectively. However, the plasma collision frequency has no effect on the frequency ranges and relative bandwidths of the PBGs for two types of three-dimensional MPPCs. The location of flatbands region can not be tuned by any parameters except for the plasma frequency and the external magnetic field.
机译:本文基于修正的平面波展开理论研究了由均匀磁化等离子体和具有简单立方晶格的介电体组成的两种类型的三维磁化等离子体光子晶体(MPPC)的光子带隙(PBG)的性质( PWE)方法,因为入射电磁(EM)波矢量平行于外部磁场。从理论上推导了计算两种光子晶体的第一不可还原布里渊区中的能带图的方程(电介质球浸在磁化等离子体背景中,反之亦然)。分别详细讨论了两种MPPC的介电常数,电浆的碰撞频率,填充率,外部磁场和电浆频率对PBG性能的影响,并给出了相应的物理解释。还讨论了平坦带区域的特性。从数值结果表明,不仅可以通过等离子频率,填充因子,外部磁场和电介质的相对介电常数来操纵两种类型的三维MPPC的PBG的带宽,而且可以控制其相对带宽。 , 分别。然而,对于两种类型的三维MPPC,等离子体碰撞频率对PBG的频率范围和相对带宽没有影响。除等离子频率和外部磁场外,任何其他参数都无法调整平坦带区域的位置。

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