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Theoretical aspects of tunneling-current-induced bond excitation and breaking at surfaces

机译:隧道电流引起的键激发和表面断裂的理论方面

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We have performed a density functional study of the electronic structure, images and vibrationally inelastic tunneling in the scanning tunneling microscope and vibrational damping by excitation of electron-hole pairs of CO chemisorbed on the (111) and (100) faces of Cu. We find that the 27t* molecular orbital of CO turns into a broad resonance with parameters that differ significantly from those suggested by inverse and two-photon photoemission measurements. The calculated vibrational damping rate for the internal stretch mode and relative changes in tunneling conductance across vibrational thresholds are in agreement with experiment. The non-adiabatic electron-vibration coupling is well described by the Newn-Anderson model for the 27t*-derived resonance whereas this model is not able to describe the non-adiabatic coupling between the tunneling electrons and the vibration. We believe that this model misses an important mechanism for vibrational excitation in tunneling that involves the change of tunneling amplitude by deformation of the one-electron wavefunctions with vibrational coordinate.
机译:我们对电子结构,图像和扫描隧穿显微镜中的振动非弹性隧穿以及通过化学吸附在Cu的(111)和(100)面上的CO电子空穴对的激发进行了振动阻尼的密度泛函研究。我们发现,CO的27t *分子轨道变成宽共振,其参数与反向和双光子光发射测量所建议的参数明显不同。计算得出的内部拉伸模式的振动阻尼率和跨振动阈值的隧穿电导的相对变化与实验一致。 Newn-Anderson模型对于27t *衍生的共振很好地描述了非绝热电子振动耦合,而该模型无法描述隧道电子与振动之间的非绝热耦合。我们认为,该模型错过了隧穿中的振动激励的重要机制,该机制涉及通过具有振动坐标的单电子波函数的变形来改变隧穿幅度。

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