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Relationship between thermodynamics and dynamics of supercooled

机译:热力学与过冷动力学之间的关系

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摘要

Diffusivity,a measure for how rapidly a fluid self-mixes,shows an intimate,but seemingly fragmented,connection to thermodynamics.On one hand,the "configurational"contribution to entropy (related to the number of mechanically stable configurations that fluid molecules can adopt)has long been considered key for predicting supercooled liquid dynamics near the glass transition.On the other hand,the excess entropy (relative to ideal gas)provides a robust scaling for the diffusivity of fluids above the freezing point.Here we provide,to our knowledge,the first evidence that excess entropy also captures how supercooling a fluid modifies its diffusivity,suggesting that dynamics,from ideal gas to glass,is related to a single,standard thermodynamic quantity.
机译:扩散率是一种衡量流体自混合速度的方法,它显示出与热力学的密切联系,但似乎是零散的。一方面,熵的“构型”贡献(与流体分子可以采用的机械稳定构型的数量有关) )长期以来一直被认为是预测玻璃化转变附近过冷液体动力学的关键。另一方面,过量的熵(相对于理想气体)为高于冰点的流体的扩散率提供了稳健的缩放比例。在这里,我们提供了知识,第一个证据表明,过量的熵还可以捕获流体的过冷度如何改变其扩散率,这表明从理想气体到玻璃的动力学与单个标准热力学量有关。

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