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周期性弹性复合材料中的声速。

Speed of sound in periodic elastic composites.

作者信息

Krokhin A A, Arriaga J, Gumen L N

机构信息

Department of Physics, University of North Texas, P.O. Box 311427, Denton, Texas 76203, USA.

出版信息

Phys Rev Lett. 2003 Dec 31;91(26 Pt 1):264302. doi: 10.1103/PhysRevLett.91.264302. Epub 2003 Dec 29.

Abstract

We consider the low-frequency limit (homogenization) for propagation of sound waves in periodic elastic medium (phononic crystals). Exact analytical formulas for the speed of sound propagating in a three-dimensional periodic arrangement of liquid and gas or in a two-dimensional arrangement of solids are derived. We apply our formulas to the well-known phenomenon of the drop of the speed of sound in mixtures. For air bubbles in water we obtain a perfect agreement with the recent results of coherent potential approximation obtained by Phys. Rev. Lett. 84, 6050 (2000)] if the filling of air bubbles is far from close packing. When air spheres almost touch each other, the approximation gives 10 times lower speed of sound than the exact theory does.

摘要

我们考虑声波在周期性弹性介质(声子晶体)中传播的低频极限(均匀化)。推导了在液体和气体的三维周期性排列或固体的二维排列中传播的声速的精确解析公式。我们将我们的公式应用于混合物中声速下降这一众所周知的现象。对于水中的气泡,如果气泡的填充远非密堆积,我们得到的结果与《物理评论快报》84, 6050 (2000)所获得的相干势近似的最新结果完全一致。当空气球几乎相互接触时,该近似给出的声速比精确理论低10倍。

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