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Surface shift of the occupied and unoccupied 4f levels of the rare-earth metals

机译:稀土金属的占有和未占用4f水平的表面位移

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摘要

The surface energy shifts of the occupied and unoccupied 4f levels for the lanthanide metals have been calculated from first principles by means of a Green’s-function technique within the tight-binding linear muffin-tin orbitals method. We use the concept of complete screening to identify the occupied and unoccupied 4f energy level shifts as the surface segregation energy of a 4fn-1 and 4fn+1 impurity atom, respectively, in a 4fn host metal. The calculations include both initial- and final-state effects and give values that are considerably lower than those measured on polycrystalline samples as well as those found in previous initial-state model calculations. The present theory agrees well with very recent high-resolution, single-crystal film measurements for Gd, Tb, Dy, Ho, Er, Tm, and Lu. We furthermore utilize the unique possibility offered by the lanthanide metals to clarify the roles played by the initial and the different final states of the core-excitation process, permitted by the fact that the so-called initial-state effect is identical upon 4f removal and 4f addition. Surface energy and work function calculations are also reported.
机译:镧系金属占据和未占据的4f能级的表面能位移已通过第一原理通过紧密结合的线性松饼-锡轨道方法中的格林函数技术从第一原理计算得出。我们使用完全筛选的概念来确定占据和未占据的4f能级移动分别是4fn主体金属中4fn-1和4fn + 1杂质原子的表面偏析能。计算包括初始状态和最终状态的影响,并且给出的值大大低于在多晶样品上测量的值以及先前在初始状态模型计算中找到的值。本理论与最近针对Gd,Tb,Dy,Ho,Er,Tm和Lu的高分辨率单晶膜测量非常吻合。我们还利用镧系金属提供的独特可能性来阐明堆芯激发过程的初始状态和不同最终状态所起的作用,这是由于所谓的初始状态效应在4f去除和4f另外。还报告了表面能和功函数的计算。

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