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Density-temperature scaling of the fragility in a model glass-former

机译:模型玻璃成型机中脆性的密度-温度标度

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Dynamical quantities e.g. diffusivity and relaxation time for some glass-formers may depend on density and temperature through a specific combination, rather than independently, allowing the representation of data over ranges of density and temperature as a function of a single scaling variable. Such a scaling, referred to as density-temperature (DT) scaling, is exact for liquids with inverse power law (IPL) interactions but has also been found to be approximately valid in many non-IPL liquids. We have analyzed the consequences of DT scaling on the density dependence of the fragility in a model glass-former. We find the density dependence of kinetic fragility to be weak, and show that it can be understood in terms of DT scaling and deviations of DT scaling at low densities. We also show that the Adam-Gibbs relation exhibits DT scaling and the scaling exponent computed from the density dependence of the activation free energy in the Adam-Gibbs relation, is consistent with the exponent values obtained by other means.
机译:动态量例如对于某些玻璃形成者,扩散率和弛豫时间可能取决于密度和温度,而不是独立地取决于特定的组合,而是允许密度和温度范围内的数据表示为单个缩放变量的函数。这种缩放比例称为密度-温度(DT)缩放比例,对于具有逆幂定律(IPL)相互作用的液体是精确的,但也已发现在许多非IPL液体中近似有效。我们已经分析了DT结垢对模型玻璃成型机中脆性的密度依赖性的影响。我们发现动力学脆弱性的密度依赖性很弱,并且表明可以从DT缩放和低密度下DT缩放的偏差来理解它。我们还表明,Adam-Gibbs关系显示出DT缩放,并且根据Adam-Gibbs关系中的激活自由能的密度依赖性计算出的缩放指数与通过其他方式获得的指数值一致。

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