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首页> 外文期刊>The Journal of Chemical Physics >VIBRATIONAL ENERGY RELAXATION OF HOD IN LIQUID D2O
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VIBRATIONAL ENERGY RELAXATION OF HOD IN LIQUID D2O

机译:液体D2O中HOD的振动能量释放

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Molecular Dynamics simulation is used to study the vibrational relaxation of the first excited state of the O-H stretch for HOD dissolved in D2O. The technique applied is based on a Landau-Teller type formula, in which the solvent contribution is computed classically, while the quantum nature of the solute enters through the transition moments of the molecular normal modes. The experimental result for the relaxation time (approximate to 8 ps) is accounted for, and the pathway to the ground state is determined. The relaxation proceeds through a sequence of intramolecular transitions initially facilitated by the solute;internal anharmonicities. In particular, the anharmonicity allows an initial and rate-determining transfer to the first overtone of the HOD bend; a corresponding harmonic force field calculation in which this step is precluded yields a relaxation time that is three orders of magnitude larger. The excess energy is removed by the bath modes, which include rotations and translations of all molecules, including the solute. Relaxation by Coriolis coupling plays a minor but non-negligible role, while the centrifugal coupling contribution to the relaxation is negligible. (C) 1996 American Institute of Physics. [References: 53]
机译:分子动力学模拟用于研究溶解在D2O中的HOD的O-H拉伸的第一激发态的振动弛豫。所采用的技术基于Landau-Teller型公式,其中经典地计算了溶剂的贡献,而溶质的量子性质则通过分子正态模式的跃迁矩进入。考虑到弛豫时间(约8 ps)的实验结果,并确定了进入基态的途径。弛豫通过最初由溶质;内部非谐性促进的一系列分子内转变而进行。特别地,非谐性允许初始的和确定速率的转移到HOD弯曲的第一泛音。相应的谐波力场计算(其中不包括该步骤)将导致松弛时间增加三个数量级。浴模式除去了多余的能量,该模式包括所有分子(包括溶质)的旋转和平移。科里奥利耦合的弛豫作用很小,但不可忽略,而离心耦合对弛豫的贡献可忽略不计。 (C)1996年美国物理研究所。 [参考:53]

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