首页> 外文期刊>The Journal of Chemical Physics >GROWTH AND COLLAPSE OF STRUCTURAL PATTERNS IN THE HYDROGEN BOND NETWORK IN LIQUID WATER
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GROWTH AND COLLAPSE OF STRUCTURAL PATTERNS IN THE HYDROGEN BOND NETWORK IN LIQUID WATER

机译:液态氢键网络中结构型式的生长和塌陷

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Intermittent and chaotic motions of the hydrogen bond network are studied with the molecular dynamics (MD) simulation. By analyzing the fluctuation in the radial distribution function, it is shown that individual water molecule alternately goes through two different periods; the structured period during which the local structure around the molecule is developed more than the average and the destructured period during which the local structure is less developed. At room temperature the lifetime of each period is hierarchically distributed from a few hundreds fsecs to several psecs. This intermittent structural fluctuation is quantitatively analyzed by defining a new quantity, local structure index (LSI). Molecules which have the large LSI value have tendency to be close to each other to form clusters. Temporal and spatial correlations of the structural order are studied with this new method. The analyses of the structural fluctuation provide a new perspective to study the collective motion of water molecules. (C) 1996 American Institute of Physics. [References: 33]
机译:通过分子动力学(MD)模拟研究了氢键网络的间歇运动和混沌运动。通过分析径向分布函数的波动,可以看出单个水分子交替经历两个不同的周期。分子周围局部结构比平均水平发展的结构化时期和局部结构较不发达的解构时间。在室温下,每个周期的寿命从几百fsec到几psec分层分布。通过定义新的数量,局部结构指数(LSI),定量分析这种间歇性结构波动。具有大LSI值的分子趋于彼此靠近以形成簇。用这种新方法研究了结构顺序的时空相关性。结构波动的分析为研究水分子的集体运动提供了新的视角。 (C)1996年美国物理研究所。 [参考:33]

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