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首页> 外文期刊>Atoms >Resonant Charge-Transfer in Grazing Collisions of H ? with Vicinal Nanosurfaces on Cu(111), Au(100) and Pd(111) Substrates: A Comparative Study
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Resonant Charge-Transfer in Grazing Collisions of H ? with Vicinal Nanosurfaces on Cu(111), Au(100) and Pd(111) Substrates: A Comparative Study

机译:在H中放牧碰撞中的共振电荷转移? Cu(111)上的邻近纳米核(100)和Pd(111)底物:比较研究

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We compare the electron dynamics at monocrystalline Cu(111), Au(100) and Pd(111) precursor substrates with vicinal nanosteps. The unoccupied bands of a surface superlattice are populated via the resonant charge transfer (RCT) between the surface and a H ? ion that flies by at grazing angles. A quantum mechanical wave packet propagation approach is used to simulate the motion of the active electron, and time-evolved wave packet densities are used to visualize the dynamics through the superlattice. The survived ion fraction in the reflected beam generally exhibits modulations as a function of the vicinal terrace size and shows peaks at those energies that access the image state subband dispersions. Differences in magnitudes of the ion-survival as a function of the particular substrate selection and the ion-surface interaction time, based on the choice of two ion-trajectories, are examined. A square well model, producing standing waves between the steps on the surface, explains the energies of the maxima in the ion survival probability for all the metals considered. This indicates that the primary process of confinement induced subband formation is robust. The work may motivate measurements and applications of shallow-angle ion-scattering spectroscopy to access electronic substructures in periodically nanostructured surfaces.
机译:我们将电子动力学比较单晶Cu(111),Au(100)和Pd(111)前体衬底的电子动力学与vicinal nanoSteps进行比较。通过表面和H之间的谐振电荷转移(RCT)填充表面超晶格的未占用条带?在放牧角度飞过的离子。量子机械波分组传播方法用于模拟有源电子的运动,并且时间进化波包密度用于通过超晶格可视化动态。反射光束中的存活的离子部分通常表现出作为邻近露台尺寸的函数的调制,并且在接近图像状态子带分散体的那些能量下示出了峰值。检查了基于两个离子轨迹的选择和离子表面相互作用时间作为特定基板选择的函数的离子存活的大小的差异。方形井模型,在表面上的台阶之间产生驻波,解释了所考虑所有金属的离子存活概率中最大值的能量。这表明限制诱发子带形成的主要过程是强大的。该工作可以激励浅角离子散射光谱的测量和应用,以便在周期性纳米结构表面中接入电子子结构。

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