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首页> 外文期刊>Physics Letters, A >Low frequency phononic band structures in two-dimensional arc-shaped phononic crystals
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Low frequency phononic band structures in two-dimensional arc-shaped phononic crystals

机译:二维弧形声子晶体中的低频声子带结构

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The low frequency phononic band structures of two-dimensional arc-shaped phononic crystals (APCs) were studied by the transfer matrix method in cylindrical coordinates. The results showed the first phononic band gaps (PBGs) of APCs from zero Hz with low modes. Locally resonant (LR) gaps were obtained with higher-order rotation symmetry, due to LR frequencies corresponding to the speeds of acoustic waves in the materials. These properties can be efficiently used in a structure for low frequencies that are forbidden, or in a device that permits a narrow window of frequencies.
机译:通过传递矩阵法研究了圆柱弧坐标系下二维弧形声子晶体(APC)的低频声带结构。结果表明,低模态下APC的零声带隙(PBG)从零赫兹开始。由于LR频率对应于材料中声波的速度,因此获得了具有较高阶旋转对称性的局部共​​振(LR)间隙。这些属性可以有效地用于禁止使用的低频结构中,或用于允许窄频率窗口的设备中。

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