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首页> 外文期刊>Physical Review, B. Condensed Matter >Characterization of isotropic solids with nonlinear surface acoustic wave pulses - art. no. 085413
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Characterization of isotropic solids with nonlinear surface acoustic wave pulses - art. no. 085413

机译:用非线性表面声波脉冲表征各向同性固体-艺术没有。 085413

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摘要

The nonlinear propagation of high-amplitude surface acoustic wave (SAW) pulses in two isotropic materials, polycrystalline aluminum and synthetic fused silica, was studied and exhibited qualitatively different types of nonlinear behavior, A single SAW pulse excited by a nanosecond laser pulse through a strongly absorbing layer was detected at two probe spots along the propagation path with a dual-probe-beam deflection setup. In this way the nonlinear changes of the SAW pulse shape were observed. For aluminum, the compression of the SAW pulse and formation of one negative (inward the solid) narrow peak in the registered normal surface velocity and a shock front in the in-plane velocity were detected. This nonlinear behavior corresponds to a positive value of the nonlinear acoustic constant responsible for the local nonlinearity. For fused silica, the temporal extension of the SAW pulse and formation of two positive sharp peaks in the normal velocity related to two shock fronts in the in-plane velocity were registered. In this case the acoustic constant of the local nonlinearity is negative. The nonlinear acoustic constants for each material were evaluated by fitting the theoretical model based on the nonlinear evolution equation to the registered SAW pulses. The values obtained were found to he consistent with those calculated from nonlinear elastic moduli of the third order, measured previously with different techniques for similar materials. The: characterization of solids by their nonlinear acoustic and elastic constants promises to be complimentary and more specific than the characterization based on the linear properties. [References: 16]
机译:研究了高振幅表面声波(SAW)脉冲在两种各向同性材料(多晶铝和合成熔融石英)中的非线性传播,并表现出不同类型的非线性行为,一个纳秒激光脉冲通过强利用双探针束偏转装置,沿着传播路径在两个探针点处检测到吸收层。这样,观察到了SAW脉冲形状的非线性变化。对于铝,检测到SAW脉冲的压缩以及所记录的法向表面速度中形成了一个负(向内)固体窄峰,并且在面内速度中检测到了冲击波前沿。该非线性行为对应于负责局部非线性的非线性声学常数的正值。对于熔融石英,记录了声表面波脉冲的时间扩展以及与面内速度中两个冲击波前沿相关的法向速度中两个正尖峰的形成。在这种情况下,局部非线性的声学常数为负。通过将基于非线性演化方程的理论模型拟合到配准的SAW脉冲,可以评估每种材料的非线性声学常数。发现获得的值与根据三阶非线性弹性模量计算出的值一致,该值先前已使用类似材料的不同技术进行了测量。固体的非线性声学和弹性常数表征比基于线性特性的表征具有互补性和特异性。 [参考:16]

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