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Towards a unified formulation of dynamics and thermodynamics. I. from microscopic to macroscopic time scales

机译:致力于动力学和热力学的统一表述。一,从微观到宏观的时间尺度

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We go a step further on the path opened in the mid-1950s by Prigogine and his collaborators towards a unified description of dynamics and thermodynamics of irreversible processes. Here, the theory is developed from concepts and methods originating in the quantum theory of resonances. The Liouville-von Neumann equation is solved by means of effective Liouvillians, which are similar to the effective Hamiltonians used in quantum mechanics. Hierarchies of effective Liouvillians allow us to determine the long macroscopic time scales from short microscopic characteristic times. For that purpose, standard perturbation theory is used in the complex plane. Damped and oscillating irreversible decays of a fluctuation are described by means of a two-dimensional matrix representation of the Liouvillian. Finally, we derive a kinetic equation for a simple model of a chemical reaction proceeding towards equilibrium. The model implies a transition state assimilated to a short-lived resonance.
机译:在Prigogine及其合作者于1950年代中期开辟的道路上,我们朝着不可逆过程的动力学和热力学的统一描述走了一步。在此,该理论是从起源于共振量子理论的概念和方法发展而来的。 Liouville-von Neumann方程是通过有效的Liouvillians求解的,这类似于量子力学中使用的有效哈密顿量。有效的Liouvillians层次结构使我们能够从较短的微观特征时间确定较长的宏观时间尺度。为此,在复杂平面中使用标准摄动理论。借助Liouvillian的二维矩阵表示法描述了波动的阻尼和振荡不可逆衰减。最后,我们导出了一个简单的化学反应模型的动力学方程,该模型趋于平衡。该模型暗示了一个过渡状态,该过渡状态与短暂的共振相似。

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