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Birth and long-time stabilization of out-of-equilibrium coherent structures

机译:非平衡相干结构的诞生和长期稳定

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We study an analytically tractable model with long-range interactions for which an out-of-equilibrium very long-lived coherent structure spontaneously appears. The dynamics of this model is indeed very peculiar: a bicluster forms at low energy and is stable for very long time, contrary to statistical mechanics predictions. We first explain the onset of the structure, by approximating the short time dynamics with a forced Burgers equation. The emergence of the bicluster is the signature of the shock waves present in the associated hydrodynamical equations. The striking quantitative agreement with the dynamics of the particles fully confirms this procedure. We then show that a very fast timescale can be singled out from a slower motion. This enables us to use an adiabatic approximation to derive an effective Hamiltonian that describes very well the long time dynamics. We then get an explanation of the very long time stability of the bicluster: this out-of-equilibrium state corresponds to a statistical equilibrium of an effective mean-field dynamics.
机译:我们研究了具有长期相互作用的分析易处理的模型,对于该模型,自发出现失衡的非常长寿命的相干结构。该模型的动力学确实非常独特:与统计力学预测相反,双峰簇以低能量形成,并且在很长时间内稳定。我们首先通过用强制Burgers方程近似短时动力学来解释结构的开始。双峰的出现是相关流体动力学方程中存在的冲击波的特征。与粒子动力学惊人的定量一致完全证实了这一过程。然后,我们表明可以从慢动作中选择出非常快的时标。这使我们能够使用绝热近似来得出有效的哈密顿量,该哈密顿量很好地描述了长时间的动力学。然后,我们得到了双星群非常长时间的稳定性的解释:这种失衡状态对应于有效平均场动力学的统计平衡。

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