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Resonant charge transfer in ion-metal surface collisions: Effect of a projected band gap in the H--Cu(111) system

机译:离子-金属表面碰撞中的共振电荷转移:H--Cu(111)系统中投影带隙的影响

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A wave-packet propagation method is applied to the treatment of the resonant charge transfer (RCT) process in the interaction between an H- ion and a Cu(111) surface. Using a model description of the Cu(111) electronic structure, it is shown that the RCT efficiency is deeply influenced by the presence of the Cu(111) projected band gap, that partially blocks the electron transfer in the direction normal to the surface. The differences between the RCT process on a free electron metal surface and on a Cu(111) surface are discussed. The two cases are associated with very different pictures of the electron transfer. In particular, the importance of the Cu(111) surface state for the decay of the H- ion is demonstrated. The effect of the band gap is also shown to strongly depend on the interaction time. For short interaction times (large collision velocities), the electron wave packet does not have enough time to probe the metal band structure and the RCT on a Cu(111) surface is very similar to that on a free electron surface. For long interaction times (low collision velocities), the RCT efficiency is drastically reduced by the presence of the band gap. The wave-packet propagation method is also used to discuss the validity of the rate equation approach in the case of a free electron metal target. [S0163-1829(99)04415-X]. [References: 68]
机译:在H离子和Cu(111)表面之间的相互作用中,将波包传播方法应用于共振电荷转移(RCT)过程的处理。使用对Cu(111)电子结构的模型描述,表明RCT效率受Cu(111)投影带隙的存在的深远影响,该投影带隙部分阻止了电子在垂直于表面的方向上的传输。讨论了在自由电子金属表面和Cu(111)表面上的RCT过程之间的差异。这两种情况与电子转移的图片截然不同。特别地,证明了Cu(111)表面状态对于H-离子衰减的重要性。带隙的影响还显示出强烈依赖于相互作用时间。对于较短的相互作用时间(较大的碰撞速度),电子波包没有足够的时间探测金属能带结构,并且Cu(111)表面上的RCT与自由电子表面上的RCT非常相似。对于较长的相互作用时间(低碰撞速度),带隙的存在会大大降低RCT效率。在自由电子金属靶的情况下,波包传播方法还用于讨论速率方程方法的有效性。 [S0163-1829(99)04415-X]。 [参考:68]

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