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Validity of the zero-thermodynamic law in off-equilibrium coupled harmonic oscillators

机译:非平衡耦合谐振子中零热力学定律的有效性

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In order to describe the thermodynamics of the glassy systems it has been recently introduced an extra parameter, the effective temperature which generalizes the fluctuation-dissipation theorem (FDT) to off-equilibrium systems and supposedly describes thermal fluctuations around the aging state. Using this concept we investigate the applicability of a zeroth thermodynamic law for non-equilibrium systems. In particular we study two coupled systems of harmonic oscillators with Monte Carlo dynamics. We analyze in detail two types of dynamics: 1) sequential dynamics where the coupling between the subsystems comes only from the Hamiltonian and 2) parallel dynamics where there is a further coupling between the subsystems arising from the dynamics. We show that the coupling described in the first case is not enough to make asymptotically the effective temperatures of the two interacting subsystems equalize, the reason being the too small thermal conductivity between them in the aging state. This explains why different interacting degrees of freedom in structural glasses many stay at different effective temperatures without never mutually thermalizing.
机译:为了描述玻璃态系统的热力学,最近引入了一个额外的参数,即有效温度,该温度将波动耗散定理(FDT)推广到非平衡系统,并假设描述了老化状态下的热波动。使用这一概念,我们研究了零热力学定律在非平衡系统中的适用性。特别是,我们研究了具有蒙特卡洛动力学的谐波振荡器的两个耦合系统。我们详细分析了两种类型的动力学:1)顺序动力学,其中子系统之间的耦合仅来自哈密顿量; 2)并行动力学,其中子系统之间的进一步耦合由动力学引起。我们表明,在第一种情况下描述的耦合不足以渐进地使两个相互作用的子系统的有效温度相等,原因是它们在老化状态下的导热系数太小。这解释了为什么结构玻璃中不同的相互作用自由度会停留在不同的有效温度而不会相互热化。

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