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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Local density of states of atoms interacting with finite-bandwidth surfaces: Spin-statistics effects
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Local density of states of atoms interacting with finite-bandwidth surfaces: Spin-statistics effects

机译:与有限带宽表面相互作用的原子状态局部密度:自旋统计效应

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The density of states on atoms interacting with solid surfaces is a required physical quantity for the understanding of processes related to scanning tunneling and photoemission spectroscopy, single-atom conductance, and emission and scattering of atoms from surfaces. In this work, we present a model calculation that allows including the localized aspects of atomic interactions and the extended features of the surface, together with alternative treatments of the Coulomb repulsion terms in the atom site. The effects of the spin fluctuation statistics treated up to a second order in the atom-surface coupling term are especially explored in this case. This approximation is comparatively analyzed with the exact results available in a model system of four levels and then used in the description of hydrogen interacting with an Al surface. Effects due to finite bandwidth and energy dependence of the local surface density of states are discussed.
机译:与固态表面相互作用的原子上的状态密度是理解与扫描隧道效应和光发射光谱,单原子电导以及原子从表面发射和散射有关的过程所需的物理量。在这项工作中,我们提出了一个模型计算,该模型计算允许包括原子相互作用的局部方面和表面的扩展特征,以及在原子位置中对库仑排斥项的替代处理。在这种情况下,特别探讨了在原子-表面耦合项中处理至第二阶的自旋涨落统计的影响。用四个级别的模型系统中可用的精确结果对这种近似进行了比较分析,然后将其用于描述氢与Al表面的相互作用。讨论了由于有限带宽和局部表面状态密度的能量依赖性而产生的影响。

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