首页> 外文会议>International Congress on Sound and Vibration >TUNABLE DIRAC CONES IN TWO-DIMENSIONAL ACOUSTIC METAMATERIALS WITH MATRYOSHKA STRUCTURE
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TUNABLE DIRAC CONES IN TWO-DIMENSIONAL ACOUSTIC METAMATERIALS WITH MATRYOSHKA STRUCTURE

机译:用Matryoshka结构的二维声学超材料中调谐狄拉科舞蹈

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Dirac cones of an acoustic system are the foundation of most topological phase transitions and topological states, and have recently become a research hotspot. Although the Dirac cones, Dirac-like cones, double Dirac cones and semi-Dirac points are all skillfully designed, it is still indispensable to realize a tunable Dirac cone in a novel acoustic structure. We propose two-dimensional acoustic metamaterials with matryoshka structure to achieve tunable Dirac cones and topological spin states. Dirac points can be obtained on the dispersion curves owing to the high symmetry. The concentric circular scattering units of the matryoshka structure are arranged in honeycomb lattices. By a rotating-scatterer mechanism to break the symmetry, the Dirac cone at K (K') is split and the topological spin states appear at the band valley. The existence of a topological transition with opposite Chern numbers as the rotating angle varies is also verified, and chair edge states are obtained along the interfaces separating the topologically opposite spin states insulators. Moreover, the frequency of the Dirac cone is tuned by rotating the inner structure in a double-layer matryoshka structure.
机译:声学系统的Dirac锥是大多数拓扑阶段转变和拓扑状态的基础,最近成为研究热点。虽然Dirac锥体,达摩像锥,双缝锥和半导体点都是巧妙的设计,但是在新颖的声学结构中实现可调谐的狄锥体仍然是必不可少的。我们提出了具有Matryoshka结构的二维声学超材料,实现可调彩光锥和拓扑旋转状态。由于高对称性,可以在色散曲线上获得DiDAC点。 Matryoshka结构的同心圆形散射单元布置在蜂窝状格子中。通过旋转散射器机构来破坏对称性,k(k')的狄拉科锥被分开,拓扑旋转状态出现在带谷上。作为旋转角度的与旋转角度相反的螺旋数的存在也有所变化,并且沿着分离拓扑相对的旋转状态绝缘体的界面获得椅背状态。此外,通过在双层Matryoshka结构中旋转内部结构来调谐狄拉科锥的频率。

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