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Study on bandgaps of two-dimensional square phononic crystal slabs with cross-like holes

机译:带有十字形孔的二维方声子晶体平板的带隙研究

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In this paper, the band structures of 2D vacuum/solid square phononic crystal slabs with cross-like holes are calculated by using the finite element method. The numerical computation is performed by Comsol Multiphysics 3.5a. The transmission spectra of a finite structure and the eigenmodes for the band edges of the lowest bandgap are also calculated. The results show that no bandgap exists for phononic crystal slabs with square holes; however, by introducing cross-like holes, the degeneracy of the bands are separated and wide bandgaps are generated. The band width to center frequency ratio is about eight times of that for the traditional phononic slab with circular holes by carefully designing the geometry of the cross-like holes. The eigenmodes corresponding to the band edges show that the bandgaps are governed by the flexural wave. The results are relevant to the optimization of the acoustic bandgaps.
机译:本文采用有限元方法计算了带有十字形孔的二维真空/固体方形声子晶体平板的能带结构。数值计算由Comsol Multiphysics 3.5a执行。还计算了最低带隙的有限结构的透射光谱和本征模。结果表明,方孔声子晶体平板不存在带隙。然而,通过引入类似十字的孔,带的简并性被分离并且产生宽的带隙。仔细设计十字形孔的几何形状,其带宽与中心频率之比约为传统带圆孔声子平板的八倍。与能带边缘相对应的本征模表明能带隙受弯曲波控制。结果与声带隙的优化有关。

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