首页> 外文期刊>Physical Review, B. Condensed Matter >Experimental and theoretical analysis of the multiphonon excitation probability for Einstein-like modes in atom-surface scattering - art. no. 155410
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Experimental and theoretical analysis of the multiphonon excitation probability for Einstein-like modes in atom-surface scattering - art. no. 155410

机译:原子表面散射中爱因斯坦样模的多声子激发概率的实验和理论分析-艺术。没有。 155410

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摘要

The probabilities of multiple excitation (multiphonon transfer) of decoupled, oscillating adsorbates on a surface via impact by an atom or molecule are discussed using a dynamical scattering model, and comparisons are made with helium scattering results for carbon monoxide adsorbed on metal surfaces. The scattering model, which contains no free adjustable parameters, is shown to predict correctly the angular dependence of the distribution of the multiphonon excitations in addition to the variation with incident energy and adsorbate frequency. Furthermore, the model is used to calculate the excitation probability of other vibrational modes that have not yet been observed using helium-atom scattering. [References: 36]
机译:使用动态散射模型讨论了通过原子或分子的撞击在表面上解耦的,振荡的吸附物的多重激发(多声子转移)的可能性,并与吸附在金属表面的一氧化碳的氦散射结果进行了比较。显示了不包含自由可调整参数的散射模型,该模型可以正确预测多声子激发分布的角度依赖性,以及入射能量和吸附物频率的变化。此外,该模型用于计算尚未使用氦原子散射观察到的其他振动模式的激发概率。 [参考:36]

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