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Tracking energy transfer from excited to accepting modes : application to water bend vibrational relaxation

机译:跟踪从激发模式到接受模式的能量转移:应用于水弯曲振动松弛

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摘要

We extend, via a reformulation in terms of Poisson brackets, the method developed previously (Rey et al., J. Phys. Chem. A, 2009, 113, 8949) allowing analysis of the pathways of an excited molecule's ultrafast vibrational relaxation in terms of intramolecular and intermolecular contributions. In particular we show how to ascertain, through the computation of power and work, which portion of an initial excess molecular energy (e.g. vibrational) is transferred to various degrees of freedom (e.g. rotational, translational) of the excited molecule itself and its neighbors. The particular case of bend excess energy relaxation in pure water is treated in detail, completing the picture reported in the work cited above. It is shown explicitly, within a classical description, that almost all of the initial water bend excitation energy is transferred—either indirectly, via Fermi resonance centrifugal coupling to the bend-excited water's rotation, or directly via intermolecular coupling— to local water librations, only involving molecules in the first two hydration shells of the vibrationally excited water molecule. Finally, it is pointed out that the Poisson bracket formulation can also be applied to elucidate the microscopic character of solvation and rotational dynamics, and should prove useful in developing a quantum treatment for energy flow in condensed phases.
机译:我们通过重新构造泊松括号来扩展先前开发的方法(Rey等人,J。Phys。Chem。A,2009,113,8949),从而可以分析受激分子超快振动弛豫的途径。分子内和分子间的贡献。特别是,我们展示了如何通过计算功率和功来确定初始多余分子能量(例如振动)的哪一部分转移到了激发分子本身及其邻居的各种自由度(例如旋转,平移)上。详细讨论了纯水中弯曲过量能量松弛的特殊情况,从而完成了以上工作中报道的图像。在经典描述中明确显示,几乎所有初始水弯激振能量(通过费米共振离心耦合间接传递到弯曲激励水的旋转,或直接通过分子间耦合传递)到局部水释放,仅涉及振动激发水分子的前两个水合壳中的分子。最后,要指出的是,泊松括号公式也可以用于阐明溶剂化和旋转动力学的微观特征,并且应该证明对开发凝聚相中能量流的量子处理很有用。

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