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首页> 外文期刊>The Journal of Chemical Physics >Theoretical evidence for nonadiabatic vibrational deexcitation in H-2(D-2) state-to-state scattering from Cu(100)
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Theoretical evidence for nonadiabatic vibrational deexcitation in H-2(D-2) state-to-state scattering from Cu(100)

机译:Cu(100)H-2(D-2)状态间散射中非绝热振动去激的理论证据

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摘要

Dynamical calculations are presented for electronically nonadiabatic vibrational deexcitation of H-2 and D-2 in scattering from Cu(111). Both the potential energy surface and the nonadiabatic coupling strength were obtained from density functional calculations. The theoretically predicted magnitude of the deexcitation and its dependence on incident energy and isotope are all in agreement with state-to-state scattering experiments [on Cu(100)], and this gives indirect evidence for a nonadiabatic mechanism of the observed deexcitation. Direct evidence could be obtained by measuring the chemicurrent associated with the deexcitation, and its properties have been predicted. (c) 2006 American Institute of Physics.
机译:动力学计算提出了从铜(111)散射中H-2和D-2的电子非绝热振动去激。势能面和非绝热耦合强度都通过密度泛函计算获得。理论上预测的激发强度及其对入射能量和同位素的依赖性都与状态间散射实验[在Cu(100)上]一致,这间接地证明了观测到的激发的非绝热机理。通过测量与去激磁有关的化学流可以获得直接的证据,并且已经预测了其性质。 (c)2006年美国物理研究所。

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