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Evidence of a two-state picture for supercooled water and its connections with glassy dynamics

机译:过冷水的两态图片及其与玻璃态动力学的联系的证据

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The picture of liquid water as consisting of a mixture of molecules of two different structural states (structured, low-density molecules and unstructured, high-density ones) represents a belief that has been around for long time awaiting for a conclusive validation. While in the last years some indicators have indeed provided certain evidence for the existence of structurally different "species", a more definite bimodality in the distribution function of a sound structural quantity would be desired. In this context, our present work combines the use of a structural parameter with a minimization technique to yield neat bimodal distributions in a temperature range within the supercooled liquid regime, thus clearly revealing the presence of two populations of differently structured water molecules. Furthermore, we elucidate the role of the inter-conversion between the identified two kinds of states for the dynamics of structural relaxation, thus linking structural information to dynamics, a long-standing issue in glassy physics.
机译:液态水由两种不同结构状态的分子(结构化的低密度分子和非结构化的高密度分子)的混合物组成,代表了一种信念,这种信念已经存在了很长一段时间,正在等待最终的验证。尽管在过去的几年中,某些指标确实为结构上不同的“物种”的存在提供了某些证据,但仍希望在合理的结构量的分布函数中具有更明确的双峰性。在这种情况下,我们目前的工作将结构参数的使用与最小化技术相结合,以在过冷液体状态下的温度范围内产生纯净的双峰分布,从而清楚地揭示了两个不同结构的水分子的存在。此外,我们阐明了所识别的两种状态之间的相互转换对于结构弛豫动力学的作用,从而将结构信息与动力学联系在一起,这是玻璃物理学中一个长期存在的问题。

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