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首页> 外文期刊>The Journal of Chemical Physics >photodissociation of the water dimer:Three-dimensional quantum dynamics studies on diabatic potential-energy surfaces
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photodissociation of the water dimer:Three-dimensional quantum dynamics studies on diabatic potential-energy surfaces

机译:二聚体的光解离:非绝热势能表面的三维量子动力学研究

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The results are presented of three-dimensional model studies of the photodissociation of the water dimer following excitation in the first absorption band.Diabatic potential-energy surfaces are used to investigate the photodissociation following excitation of the hydrogen bond donor molecule and of the hydrogen bond acceptor molecule.In both cases,the degrees of freedom considered are the two OH-stretch modes of the molecule being excited,and the dimer stretch vibration.The diabatic potentials are based on adiabatic potential surfaces computed with the multireference configuration-interaction method,and the dynamics of dissociation was studied using the time-dependent wave-packet method.The dynamics calculations yield a donor spectrum extending over roughly the same range of frequencies as the spectrum of the water monomer computed at the same level of theory.The acceptor spectrum has the same width as the monomer spectrum,but is shifted to the blue by 0.4-0.5 eV.The dimer spectrum obtained by averaging the donor and the acceptor spectrum is broader than the monomer spectrum,with the center of the dimer first absorption band shifted to the blue by about 0.2 eV relative to the monomer band.Our reduced dimensionality calculations do not find the red tail predicted for the dimer first absorption band by Harvey et al.[J.Chem.Phys.109,8747(1998)].This conclusion also holds if preexcitation of the dimer stretch vibration with one or two quanta is considered.
机译:给出了在第一个吸收带中激发后水二聚体光解离的三维模型研究结果。利用非绝热势能表面研究了氢键供体分子和氢键受体激发后的光解离在这两种情况下,所考虑的自由度是被激发分子的两种OH拉伸模式以及二聚体拉伸振动。绝热势是基于用多参考构型-相互作用法计算的绝热势面,以及使用随时间变化的波包方法研究了解离动力学。动力学计算得出的供体光谱与在相同理论水平上计算出的水单体的光谱大致在相同的频率范围内延伸。与单体光谱具有相同的宽度,但移至蓝色为0.4-0.5 eV。平均施主和受主光谱的结果要比单体光谱宽,二聚体的第一个吸收带的中心相对于单体带向蓝色偏移约0.2 eV。我们的降维计算没有找到预测的红尾Harvey等人[J.Chem.Phys.109,8747(1998)]对二聚体的第一吸收带进行了研究。如果考虑对具有一或两个量子的二聚体拉伸振动进行预激励,这一结论也成立。

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