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Vibrational deexcitation and rotational excitation of H _2 and D _2 scattered from Cu(111): Adiabatic versus non-adiabatic dynamics

机译:从Cu(111)散射的H _2和D _2的振动去激励和旋转激励:绝热与非绝热动力学

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摘要

We have studied survival and rotational excitation probabilities of H _2(v _i 1, J _i 1) and D _2(v _i 1, J _i 2) upon scattering from Cu(111) using six-dimensional (6D) adiabatic (quantum and quasi-classical) and non-adiabatic (quasi-classical) dynamics. Non-adiabatic dynamics, based on a friction model, has been used to analyze the role of electron-hole pair excitations. Comparison between adiabatic and non-adiabatic calculations reveals a smaller influence of non-adiabatic effects on the energy dependence of the vibrational deexcitation mechanism than previously suggested by low-dimensional dynamics calculations. Specifically, we show that 6D adiabatic dynamics can account for the increase of vibrational deexcitation as a function of the incidence energy, as well as for the isotope effect observed experimentally in the energy dependence for H _2(D _2)/Cu(100). Furthermore, a detailed analysis, based on classical trajectories, reveals that in trajectories leading to vibrational deexcitation, the minimum classical turning point is close to the top site, reflecting the multidimensionally of this mechanism. On this site, the reaction path curvature favors vibrational inelastic scattering. Finally, we show that the probability for a molecule to get close to the top site is higher for H _2 than for D _2, which explains the isotope effect found experimentally.
机译:我们已经研究了使用二维(6D)绝热(量子和准经典)和非绝热(准经典)动力学。基于摩擦模型的非绝热动力学已用于分析电子-空穴对激发的作用。绝热和非绝热计算之间的比较显示,非绝热效应对振动消除激振机制的能量依赖性的影响要比先前由低维动力学计算所建议的要小。具体来说,我们表明6D绝热动力学可以解释振动去激振作为入射能量的函数,以及在H _2(D _2)/ Cu(100)的能量依赖性中实验观察到的同位素效应。此外,基于经典轨迹的详细分析显示,在导致振动去激励的轨迹中,最小经典转折点靠近顶部,反映了这种机制的多维性。在此位置,反应路径曲率有利于振动非弹性散射。最后,我们表明,对于H _2,分子接近顶部位点的概率比对D _2更高,这说明了通过实验发现的同位素效应。

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