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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Locally resonant phononic crystals made of hollow spheres or cylinders
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Locally resonant phononic crystals made of hollow spheres or cylinders

机译:由空心球或圆柱体制成的局部共振声子晶体

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The acoustic properties of three- and two-dimensional phononic crystals consisting of hollow spheres or cylinders are studied by means of numerical calculations by the layer-multiple-scattering and the finite-difference-time-domain methods. The frequency band structure of these crystals is analyzed in conjunction with relevant transmission spectra, and the nature and physical-origin of the different modes is elucidated. The building units of these crystals exhibit localized resonance states which can lead to almost dispersionless bands within an otherwise absolute gap. A feature that makes such systems potentially useful in the way of practical applications as efficient frequency filters. The influence of different geometric and material parameters on the position of these resonances is systematically examined. Such an optimized system made of a polymer material is proposed and studied in detail.
机译:通过层-多重散射和时域有限差分法的数值计算,研究了由空心球或圆柱构成的三维声子晶体的声学特性。结合相关的透射光谱分析了这些晶体的频带结构,并阐明了不同模式的性质和物理起源。这些晶体的构建单元表现出局部共振状态,这会导致在原本的绝对间隙内产生几乎无色带。使此类系统在实际应用中潜在有用的功能,即高效的频率滤波器。系统地检查了不同的几何和材料参数对这些共振位置的影响。提出并详细研究了这种由聚合物材料制成的优化系统。

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