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声子晶体平板完全带隙内的波导

Waveguiding inside the complete band gap of a phononic crystal slab.

作者信息

Hsiao Fu-Li, Khelif Abdelkrim, Moubchir Hanane, Choujaa Abdelkrim, Chen Chii-Chang, Laude Vincent

机构信息

Institut FEMTO-ST, Département LPMO, CNRS UMR 6174, Université de Franche-Comté, 25044 Besancon cedex, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Nov;76(5 Pt 2):056601. doi: 10.1103/PhysRevE.76.056601. Epub 2007 Nov 8.

Abstract

The propagation of acoustic waves in a square-lattice phononic crystal slab consisting of a single layer of spherical steel beads in a solid epoxy matrix is studied experimentally. Waves are excited by an ultrasonic transducer and fully characterized on the slab surface by laser interferometry. A complete band gap is found to extend around 300 kHz, in good agreement with theoretical predictions. The transmission attenuation caused by absorption and band gap effects is obtained as a function of frequency and propagation distance. Well confined acoustic wave propagation inside a line-defect waveguide is further observed experimentally.

摘要

对由单层球形钢珠置于固体环氧树脂基体中构成的方形晶格声子晶体平板中的声波传播进行了实验研究。通过超声换能器激发声波,并利用激光干涉测量法在平板表面对其进行全面表征。发现一个完整的带隙在300 kHz左右扩展,与理论预测吻合良好。得到了由吸收和带隙效应引起的传输衰减随频率和传播距离的函数关系。还通过实验进一步观察到了声波在线缺陷波导内的良好限制传播。

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