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Quantum surface diffusion of vibrationally excited molecular dimers

机译:振动激发的分子二聚体的量子表面扩散

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We consider the thermally activated quantum diffusion of a molecular dimer in a periodic surface potential by means of a time-dependent wave packet method.We show that the potential energy surface resulting from the interplay of intradimer and dimer-surface interactions can lead to resonant states and predict high tunneling probabilities at specific,below barrier,energies that depend also on the initial vibrational state of the dimer.For soft molecular bonds,we show that the chaotic dynamical regime of classical dimers is mirrored,in the quantum case,by the tunneling induced mixing of vibrational states.The knowledge of the transmission coefficient is used to formulate an approximate description of quantum thermal diffusion by defining an effective temperature-dependent activation energy that can be compared to the classical case.
机译:我们通过时间依赖性波包方法研究了分子二聚体在周期性表面势中的热活化量子扩散,结果表明,由二聚体内和二聚体-表面相互作用引起的势能面可以导致共振态并预测在特定的,低于势垒的能量处的高隧穿概率,这也取决于二聚体的初始振动状态。对于软分子键,我们证明了经典二聚体的混沌动力学机制在量子情况下通过隧穿得到了反映。通过定义有效的与温度有关的激活能,可以将传输系数的知识用于描述量子热扩散的近似描述,该能量可以与经典情况进行比较。

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