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Self-induced acoustic transparency of three-component longitudinal- transverse pulses

机译:三分量纵向-横向脉冲的自感应声透明性

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The features of the nonlinear dynamics of three-component elastic pulses in a low-temperature crystal containing paramagnetic impurities of electron and nuclear spins have been analyzed in the slowly varying envelope approximation. The presence of the electron spin subsystem makes it possible to equate the velocities of longitudinal sound and transverse acoustic waves; as a result, all components of the strain field efficiently interact with each other through the nuclear spin subsystem. The system of equations for envelopes of harmonics of the components of the strain field and the spin variables has been derived. The relations between the amplitudes and phases of the components have been obtained, the spectral composition has been analyzed, and the regimes of acoustic transparency of three-component longitudinal-transverse pulses have been discussed.
机译:在缓慢变化的包络近似中,分析了包含电子和核自旋的顺磁性杂质的低温晶体中三组分弹性脉冲的非线性动力学特征。电子自旋子系统的存在使纵向声波和横向声波的速度相等成为可能。结果,应变场的所有分量都通过核自旋子系统彼此有效地相互作用。推导了应变场分量和自旋变量的谐波包络方程组。得到了各分量的振幅和相位之间的关系,分析了频谱组成,并讨论了三分量纵向横向脉冲的声透明性。

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