Modulational instability and collapse of internal gravity waves in the atmosphere

Volodymyr M. Lashkin, Oleg K. Cheremnykh
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Abstract

Nonlinear two-dimensional internal gravity waves (IGWs) in the atmospheres of the Earth and the Sun are studied. The resulting two-dimensional nonlinear equation has the form of a generalized nonlinear Schr\"{o}dinger equation with nonlocal nonlinearity, that is when the nonlinear response depends on the wave intensity at some spatial domain. The modulation instability of IGWs is predicted, and specific cases for the Earth's atmosphere are considered. In a number of particular cases, the instability thresholds and instability growth rates are analytically found. Despite the nonlocal nonlinearity, we demonstrate the possibility of critical collapse of IGWs due to the scale homogeneity of the nonlinear term in spatial variables.
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大气层内部重力波的调制不稳定性和坍缩
研究了地球和太阳大气中的非线性二维内部重力波(IGWs)。由此产生的二维非线性频率是一个具有非局部非线性的广义非线性薛定谔方程,即非线性响应取决于某个空间域的波强。预测了 IGW 的调制不稳定性,并考虑了地球大气的具体情况。在一些特殊情况下,通过分析找到了不稳定性阈值和不稳定性增长率。尽管存在非局部非线性,但由于空间变量中非线性项的尺度均匀性,我们证明了 IGW 临界坍塌的可能性。
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