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首页> 外文期刊>The Journal of Chemical Physics >Mode coupling and fragile to strong transition in supercooled TIP4P water
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Mode coupling and fragile to strong transition in supercooled TIP4P water

机译:在过冷的TIP4P水中模式耦合和易碎至强转变

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摘要

We consider one of the most used model for water, the rigid four site TIP4P potential, and we study by molecular dynamics simulation the dynamical properties of the liquid upon supercooling. In the previous studies of the thermodynamics of the TIP4P model a liquid-liquid critical point (LLCP) located at the end of the coexistence between the low density liquid (LDL) and the high density liquid (HDL) of water was found. We present here the analysis of the self intermediate scattering functions in a large range of temperatures and densities and we show that the structural relaxation in the region of mild supercooling is in agreement with the predictions of the mode coupling theory. In the more deep supercooled region we observe that the α-relaxation time deviates from the mode coupling theory (MCT) trend and a crossover takes place from a fragile to a strong behavior upon crossing the Widom line emanating from the LLCP. The HDL and the LDL phases are associated with the fragile and the strong behavior, respectively.
机译:我们考虑了最常用的水模型之一,即刚性的四位点TIP4P电势,并通过分子动力学模拟研究了过冷时液体的动力学特性。在先前对TIP4P模型的热力学的研究中,发现了位于水的低密度液体(LDL)和高密度液体(HDL)之间共存末端的液-液临界点(LLCP)。在这里,我们对大范围温度和密度下的自中间散射函数进行分析,结果表明,在温和过冷区域的结构弛豫与模式耦合理论的预测一致。在更深的过冷区域中,我们观察到α松弛时间偏离了模态耦合理论(MCT)的趋势,并且在跨越LLCP发出的Widom线时发生了从脆弱到强烈的转变。 HDL和LDL阶段分别与脆弱行为和强行为相关联。

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