Ma Tian-Xue, Wang Yue-Sheng, Wang Yan-Feng, Su Xiao-Xing
Institute of Engineering Mechanics, Beijing Jiaotong University, Beijing 100044, China.
Opt Express. 2013 Feb 11;21(3):2727-32. doi: 10.1364/OE.21.002727.
We theoretically demonstrate the existence of simultaneous large complete photonic and phononic bandgaps in three-dimensional dielectric phoxonic crystals with a simple cubic lattice. These phoxonic crystals consist of dielectric spheres on the cubic lattice sites connected by thin dielectric cylinders. The simultaneous photonic and phononic bandgaps can exist over a wide range of geometry parameters. The vibration modes corresponding to the phononic bandgap edges are the local torsional resonances of the dielectric spheres and rods. Detailed discussion is presented on the variation of the photonic and phononic bandgaps with the geometry of the structure. Optimal geometry which generates large phoxonic bandgaps is suggested.
我们从理论上证明了在具有简单立方晶格的三维介电声子晶体中同时存在大的完全光子带隙和声子带隙。这些声子晶体由立方晶格位点上的介电球体组成,这些球体通过薄的介电圆柱体连接。同时存在的光子带隙和声子带隙可以在很宽的几何参数范围内存在。与声子带隙边缘对应的振动模式是介电球体和棒的局部扭转共振。文中详细讨论了光子带隙和声子带隙随结构几何形状的变化。提出了产生大声子带隙的最佳几何结构。