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Absolute forbidden bands and waveguiding in two-dimensional phononic crystal plates

机译:二维声子晶体板中的绝对禁带和波导

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摘要

We introduce a supercell plane wave expansion (SC-PWE) method for the calculation of elastic band structures of two-dimensional phononic crystal plates. We compute the band structure of solid-solid and air-solid two-dimensional phononic crystal plates. The air is modeled as a low impedance medium (LIM) with very low density and very high velocities of sound. We investigate the influence of the constituent materials, of the plate thickness, and of the geometry of the array on the band structure. We establish the range of validity of the SC-PWE method in terms of the rate of convergence with respect to the number of plane waves and contrast in physical properties of the matrix and inclusion materials. We show that for high contrast solid-solid phononic crystal plates, our SC-PWE method, as other PWE-based methods introduced to date, suffers from convergence difficulties. In the case of air (modeled as the LIM) holes-solid plates, we demonstrate that the SC-PWE method leads to fast convergence for a wide range of values of solid physical properties. With these constituent materials, we find that the largest absolute forbidden bands occur in the band structure of the phononic crystal plate provided the thickness of the plate is of the order of magnitude of the periodicity of the array of inclusions. We demonstrate the existence of guided modes in an air-silicon phononic crystal plate containing a linear defect.
机译:我们介绍了一种超级单元平面波扩展(SC-PWE)方法,用于计算二维声子晶体板的弹性带结构。我们计算了固体-固体和空气-固体二维声子晶体板的能带结构。空气被建模为具有非常低的密度和非常高的声速的低阻抗介质(LIM)。我们研究了组成材料,板厚度和阵列几何形状对能带结构的影响。我们根据相对于平面波数的收敛速度以及基体和夹杂物的物理特性中的对比度确定SC-PWE方法的有效性范围。我们表明,对于高对比度的固体-固体声子晶体板,我们的SC-PWE方法以及迄今为止引入的其他基于PWE的方法都存在收敛困难。在空气(建模为LIM)孔-实心板的情况下,我们证明了SC-PWE方法可在广泛范围的实心物理特性值上实现快速收敛。利用这些构成材料,我们发现,如果板的厚度为夹杂物阵列的周期性的数量级,则最大的绝对禁带出现在声子晶体板的能带结构中。我们演示了在包含线性缺陷的空气硅声子晶体板中存在引导模式。

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