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Continuous and Discontinuous Dynamic Crossover inSupercooled Water in Computer Simulations

机译:连续和不连续动态交叉计算机模拟中的过冷水

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摘要

The dynamic crossover behavior of supercooled water as described by the first-principle based WAIL potential was investigated. Below the second liquid–liquid critical point, the viscosity shows a discontinuous jump consistent with a first-order phase transition between the high density liquid and the low density liquid. Above the critical point, a continuous transition occurs with only the first derivative of viscosity being discontinuous, and the dynamic crossover temperature is about 8 K below the thermodynamic switchover temperature. The 8 K shift can be explained by a delay in dynamic crossover, which does not occur until the more viscous liquid starts to dominate the population and jams the flow. On the basis of finite-size effects observed in our simulations, we believe that dynamic discontinuity may be observable above the critical point in confined water when the confinement is on a length scale shorter than the spatial correlation.
机译:研究了基于第一原理的WAIL势所描述的过冷水的动态交换行为。在第二液-液临界点以下,粘度显示出不连续的跃迁,与高密度液体和低密度液体之间的一阶相变一致。在临界点以上,会发生连续转变,只有粘度的一阶导数是不连续的,并且动态转换温度比热力学转换温度低约8K。 8 K的偏移可以用动态交换的延迟来解释,该延迟不会发生,直到更粘稠的液体开始控制总体并阻塞流动为止。根据我们在模拟中观察到的有限尺寸效应,我们认为,当约束的长度尺度短于空间相关性时,在约束水中临界点以上可以观察到动态不连续性。

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