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Resonance Enhancement by Suitably Chosen Frequency Detuning

机译:Resonance Enhancement by Suitably Chosen Frequency Detuning

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摘要

The theory of exact resonances (kinematics and dynamics) is well developed while even the very concept of detuned resonance is ambiguous and only studies of their kinematic characteristics (that is, those not depending on time) are available in the literature. In this paper, we report novel effects enforced by the resonance detuning on solutions of the dynamical system describing interactions of three spherical planetary waves. We establish that the energy variation range can significantly exceed the range of the exact resonance for suitably chosen values of the detuning. The asymmetry of system’s solutions with respect to the sign of the detuning parameter is demonstrated. Finally, a non-monotonic dependence of the energy oscillation period with respect to detuning magnitude is discovered. These results have direct implications in physics of atmosphere, e.g., for prediction of weather extremes in the Northern Hemisphere midlatitudes (Proc. Nat. Acad. Sci. USA 2016, 133(25), 6862−6867). Moreover, similar study can be conducted for a generic three-wave system taken in the Hamiltonian form which makes our results applicable for an arbitrary Hamiltonian three-wave system met in climate prediction theory, geophysical fluid dynamics, plasma physics, etc.
机译:精确共振(运动学和动态)的理论是良好的,同时即使是障碍共振的概念也是含糊不清的,并且只有研究其运动学特性(即,那些不根据时间的人)在文献中可用。在本文中,我们通过对描述三个球形行星波的相互作用的动态系统的解决方案来报告强制执行的新颖效果。 We establish that the energy variation range can significantly exceed the range of the exact resonance for suitably chosen values of the detuning.对系统的解决方案的不对称性关于静谐参数的符号进行了说明。最后,发现了能量振荡周期相对于静脉静脉震荡的非单调依赖性。这些结果在大气层中具有直接影响,例如,用于预测北半球中间人中间人的天气极端(Proc.Acad.Co.SCI。美国2016,133(25),6862-6867)。此外,可以针对在汉密尔顿人的形式中采取的通用三波系统进行类似的研究,这使我们的结果适用于包括气候预测理论,地球物理流体动力学,等离子体物理等任意哈密顿三波系统的结果。

著录项

  • 作者

    Denys Dutykh; Elena Tobisch;

  • 作者单位
  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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