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Velocity correlations in liquid hydrogen fluoride

机译:液态氟化氢中的速度相关性

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The center-of-mass velocity autocorrelation function is analyzed by computer simulation in a model of liquid hydrogen fluoride at two state points. In comparison with water (another hydrogen-bonded liquid) new features arise. To understand the peculiarities of HF, we have investigated atomic velocity correlations in both the laboratory and a molecular frame. The comparison of the frequency spectra permits to ascertain the role of fluorine-hydrogen correlations (or of rototranslational couplings) in the center-of-mass velocity autocorrelation function. At low temperature, the appearance of a long time tail is discussed in terms of projections in the two references frames, and found to be mostly associated with orientational correlations. A discussion in terms of velocity transfer between nearest-neighbor molecules is also given.
机译:在两个状态点的液态氟化氢模型中,通过计算机仿真分析了质心速度自相关函数。与水(另一种氢键结合的液体)相比,出现了新的特征。为了了解HF的特殊性,我们在实验室和分子框架中研究了原子速度的相关性。频谱的比较可以确定氟-氢相关(或旋转平移耦合)在质心速度自相关函数中的作用。在低温下,根据两个参考系中的投影讨论了长尾巴的出现,并且发现它们主要与方向相关性相关。还给出了关于最近邻分子之间的速度传递的讨论。

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