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首页> 外文期刊>The Journal of Chemical Physics >Heat capacity, enthalpy fluctuations, and configurational entropy in broken ergodic systems
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Heat capacity, enthalpy fluctuations, and configurational entropy in broken ergodic systems

机译:破碎的遍历系统中的热容量,焓波动和构型熵

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摘要

A common assumption in the glass science community is that the entropy of a glass can be calculated by integration of measured heat capacity curves through the glass transition. Such integration assumes that glass is an equilibrium material and that the glass transition is a reversible process. However, as a nonequilibrium and nonergodic material, the equations from equilibrium thermodynamics are not directly applicable to the glassy state. Here we investigate the connection between heat capacity and configurational entropy in broken ergodic systems such as glass. We show that it is not possible, in general, to calculate the entropy of a glass from heat capacity curves alone, since additional information must be known related to the details of microscopic fluctuations. Our analysis demonstrates that a time-average formalism is essential to account correctly for the experimentally observed dependence of thermodynamic properties on observation time, e.g., in specific heat spectroscopy. This result serves as experimental and theoretical proof for the nonexistence of residual glass entropy at absolute zero temperature. Example measurements are shown for Corning code 7059 glass.
机译:在玻璃科学界,一个普遍的假设是玻璃的熵可以通过玻璃化转变过程中测得的热容曲线的积分来计算。这种集成假定玻璃是平衡材料,并且玻璃化转变是可逆过程。但是,作为非平衡和非遍历材料,来自平衡热力学的方程式不能直接应用于玻璃态。在这里,我们研究了诸如玻璃这样的遍历遍历系统中的热容量与构型熵之间的关系。我们表明,通常不可能仅从热容曲线计算玻璃的熵,因为必须知道与微观波动的细节有关的其他信息。我们的分析表明,时间平均形式对于正确解释实验观察到的热力学性质对观察时间的依赖性至关重要,例如在比热光谱法中。该结果可作为在绝对零温度下不存在残留玻璃熵的实验和理论证明。显示了康宁代码7059玻璃的示例测量。

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