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Acoustic breathing mode frequencies in cylinders, cylindrical shells and composite cylinders of general anisotropic crystals: Application to nanowires

机译:普通各向异性晶体的圆柱体,圆柱壳和复合圆柱体中的声呼吸模式频率:应用于纳米线

摘要

We present here a study of the acoustic breathing modes for infinitely long cylinders, cylindrical shells and composite cylinders of general anisotropic crystals. We assume cylindrical anisotropy for the systems studied. We obtain expressions in closed form for their frequencies in the case of cylinders and cylindrical shells, valid for any anisotropic material, thus including up to 21 independent elastic constants. In the case of the lowest breathing mode of a thin cylindrical shell we obtain a simple analytical formula. This can be used to obtain a first estimate of the breathing mode frequency in nanotubes for any material. In the case of core-shell and composite cylinders we obtain the expressions for the secular determinant. We calculate the frequencies of the lowest acoustic breathing mode of Au, CdSe, InAs, GaAs, Ag and Bi nanowires obtained recently by different experimental groups. We also present results for the acoustic breathing modes of Au/Ag and ZnS/SiO2 core-shell nanowires produced recently. © 2013 Elsevier B.V.
机译:在这里,我们对普通各向异性晶体的无限长圆柱体,圆柱壳和复合圆柱体的声学呼吸模式进行了研究。我们假设所研究系统的圆柱各向异性。对于圆柱体和圆柱壳,我们获得其频率的封闭形式的表达式,对任何各向异性的材料均有效,因此包括多达21个独立的弹性常数。对于圆柱形薄壳的最低呼吸模式,我们可以获得一个简单的解析公式。这可用于获得任何材料的纳米管中呼吸模式频率的第一估计值。对于核壳和复合圆柱体,我们获得了世俗行列式的表达式。我们计算了最近由不同实验组获得的Au,CdSe,InAs,GaAs,Ag和Bi纳米线的最低声呼吸模式的频率。我们还介绍了最近生产的Au / Ag和ZnS / SiO2核壳纳米线的声学呼吸模式的结果。 ©2013 Elsevier B.V.

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