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Heat transfer and Fourier's law in off-equilibrium systems

机译:非平衡系统中的热传递和傅立叶定律

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We study the most suitable procedure to measure the effective temperature in off-equilibrium systems. We analyze the stationary current established between an off-equilibrium system and a thermometer and the necessary conditions for that current to vanish. We find that the thermometer must have a short characteristic time-scale compared to the typical decorrelation time of the glassy system to correctly measure the effective temperature. This general conclusion is confirmed analyzing an ensemble of harmonic oscillators with Monte Carlo dynamics as an illustrative example of a solvable model of a glass. We also find that the current defined allows to extend Fourier's law to the off-equilibrium regime by consistently defining effective transport coefficients. Our results for the oscillator model explain why thermal conductivities between thermalized and frozen degrees of freedom in structural glasses are extremely small.
机译:我们研究最合适的方法来测量非平衡系统中的有效温度。我们分析了在非平衡系统和温度计之间建立的固定电流以及该电流消失的必要条件。我们发现,与玻璃系统的典型去相关时间相比,温度计必须具有较短的特征时间范围,才能正确测量有效温度。该一般结论已得到确认,该分析以蒙特卡洛动力学分析谐波谐振器的集合作为玻璃可解模型的说明性示例。我们还发现,当前定义允许通过始终如一地定义有效传输系数,将傅里叶定律扩展到非平衡体系。我们关于振荡器模型的结果解释了为什么结构玻璃的热化自由度和冻结自由度之间的热导率非常小。

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