Study on Bandgap Property of Three‐Dimensional Star‐Like Double‐Arrow Lattice

Jiahong Hou, Dong Li, P. Yu, Zhijun Zhang, Haifeng Ruan, Hongchen Liu
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Abstract

Herein, a three‐dimensional star‐like double‐arrow lattice is proposed, which is inspired by the double‐arrow structure. Based on Bloch's theorem and finite element method, the calculation program is made up and the band structures are calculated. The calculation results demonstrate that the bandgap property of the double‐arrow lattice is improved compared with that of a cross lattice. The parametric study is carried out and geometric parameters have strong effects on the bandgap property. As the angle between the external edge and symmetric line increases, the total bandgap width increases apparently, and the opening frequency of low‐order bandgap decreases. This phenomenon reflects that the low‐frequency bandgap property is improved. Via the isosurface of phase velocity and group velocity, the anisotropy is investigated. Strong anisotropy and energy focus appear, which can be used to design waveguides.
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三维类星双箭头晶格带隙性质的研究
本文受双箭头结构的启发,提出了一种三维类星双箭头晶格。根据布洛赫定理和有限元法编制了计算程序,并对带结构进行了计算。计算结果表明,与交叉晶格相比,双箭头晶格的带隙性能得到了改善。进行了参数化研究,几何参数对带隙性能有较大影响。随着外缘与对称线夹角的增大,总带隙宽度明显增大,低阶带隙的开启频率减小。这种现象反映了低频带隙性能得到了改善。通过相速度和群速度等值面,研究了各向异性。出现了较强的各向异性和能量聚焦,可用于波导设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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