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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Vibrational phase relaxation of O-H stretch in bulk water: Role of large amplitude angular jumps and negative cross-correlations among the forces on the O-H bond
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Vibrational phase relaxation of O-H stretch in bulk water: Role of large amplitude angular jumps and negative cross-correlations among the forces on the O-H bond

机译:散装水中O-H拉伸的振动相弛豫:O-H键上的力之间的大幅度角跳和负互相关的作用

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摘要

The ultrafast vibrational phase relaxation of O-H stretch in bulk water is investigated in molecular dynamics simulations. The dephasing time (T-2) of the O-H stretch in bulk water calculated from the frequency fluctuation time correlation function (C-w(t)) is in the range of 70-80 femtosecond (fs), which is comparable to the characteristic timescale obtained from the vibrational echo peak shift measurements using infrared photon echo [W.P. de Boeij, M.S. Pshenichnikov, D.A. Wiersma, Ann. Rev. Phys. Chem. 49 (1998) 99]. The ultrafast decay of C-w(t) is found to be responsible for the ultrashort T-2 in bulk water. Careful analysis reveals the following two interesting reasons for the ultrafast decay of C-w(t). (A) The large amplitude angular jumps of water molecules (within 30-40 fs time duration) provide a large scale contribution to the mean square vibrational frequency fluctuation and gives rise to the rapid spectral diffusion on 100 fs time scale. (b) The projected force, due to all the atoms of the solvent molecules on the oxygen (F-O(t)) and hydrogen (F-H(t)) atom of the O-H bond exhibit a large negative cross-correlation (NCC). We further find that this NCC is partly responsible for a weak, non-Arrhenius temperature dependence of the dephasing rate. (C) 2007 Elsevier B.V. All rights reserved.
机译:在分子动力学模拟中研究了O-H拉伸在散装水中的超快速振动相弛豫。由频率波动时间相关函数(Cw(t))计算出的散装水中OH拉伸的移相时间(T-2)在70-80飞秒(fs)的范围内,与获得的特征时标相当使用红外光子回波[WP]进行振动回波峰移测量得到的结果德Boeij,M.S.普舍尼奇尼科夫维尔斯玛,安。物理牧师化学49(1998)99]。发现C-w(t)的超快衰减是散装水中超短T-2的原因。仔细的分析揭示了C-w(t)超快衰减的以下两个有趣的原因。 (A)水分子的大幅度角跳动(在30-40 fs的持续时间内)为均方振动频率波动提供了较大的比例贡献,并在100 fs的时间尺度上引起了快速的光谱扩散。 (b)由于溶剂分子在O-H键的氧(F-O(t))和氢(F-H(t))原子上的所有原子而产生的投射力表现出较大的负互相关(NCC)。我们进一步发现,该NCC造成移相速率的微弱,非阿累尼乌斯温度依赖性的部分原因。 (C)2007 Elsevier B.V.保留所有权利。

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