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Resonant second-harmonic generation accompanying nonlinear Love-wave propagation in an isotropic waveguide

机译:各向同性波导中的非线性爱波传播伴随的谐振二次谐波生成

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In this article we have studied resonant second-harmonic generation accompanying nonlinear Love-wave propagation in an isotropic waveguide consisting of a solid layer and a semi-infinite solid. Generally, the amplitude of the second harmonic arising from the self-interaction of shear wave is independent of propagation distance, i.e., there is no effect of cumulative growth. However, for Love-wave propagation case, there are two shear partial waves in the solid layer deposited on the semi-infinite solid, and the cross-interaction between two shear waves may cause the "resonance" of the driving second harmonic once the phase velocity of the Love-wave equals the longitudinal velocity of the solid layer. Through second-harmonic boundary conditions and initial conditions of excitation, we formally obtain the analytical expressions for the case of resonant second-harmonic generation. The present analysis yields clearly physical insight into the process of resonant second-harmonic generation accompanying nonlinear Love-wave propagation not previously available.
机译:在本文中,我们研究了由固体层和半无限固体组成的各向同性波导中的非线性爱波传播的共振二次谐波生成。通常,由剪切波的自相互作用产生的第二谐波的幅度与传播距离无关,即,没有累积增长的影响。然而,对于爱波传播情况,在半无限固体上沉积的固体层中存在两个剪切部分波,并且两个剪切波之间的交叉相互作用可能导致驾驶第二次谐波的“共振”爱波的速度等于固体层的纵向速度。通过二次谐波边界条件和激发的初始条件,我们正式获得了谐振二次谐波产生的分析表达。目前的分析结果明显地对伴随非线性爱波传播的谐振二次谐波生成的过程进行了物理洞察。

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