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Formation of Surface and Quantum-Well States in Ultra Thin Pt Films on the Au(111) Surface

机译:在Au(111)表面上的超薄Pt膜中形成表面和量子阱态

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摘要

The electronic structure of the Pt/Au(111) heterostructures with a number of Pt monolayers n ranging from one to three is studied in the density-functional-theory framework. The calculations demonstrate that the deposition of the Pt atomic thin films on gold substrate results in strong modifications of the electronic structure at the surface. In particular, the Au(111) s-p-type Shockley surface state becomes completely unoccupied at deposition of any number of Pt monolayers. The Pt adlayer generates numerous quantum-well states in various energy gaps of Au(111) with strong spatial confinement at the surface. As a result, strong enhancement in the local density of state at the surface Pt atomic layer in comparison with clean Pt surface is obtained. The excess in the density of states has maximal magnitude in the case of one monolayer Pt adlayer and gradually reduces with increasing number of Pt atomic layers. The spin–orbit coupling produces strong modification of the energy dispersion of the electronic states generated by the Pt adlayer and gives rise to certain quantum states with a characteristic Dirac-cone shape.
机译:在密度泛函理论框架中研究了Pt / Au(111)异质结构的电子结构,其中Pt单层n的范围为1到3。计算表明,Pt原子薄膜在金基底上的沉积会导致表面电子结构发生强烈变化。特别是,Au(111)s-p型肖克利表面态在沉积任意数量的Pt单层时变得完全不被占据。 Pt附加层在Au(111)的各种能隙中产生大量的量子阱态,并且在表面处具有很强的空间限制。结果,与清洁的Pt表面相比,在表面Pt原子层处的状态局部密度得到了极大的增强。在一个单层Pt附加层的情况下,状态密度的过剩具有最大的幅度,并且随着Pt原子层数的增加而逐渐减小。自旋-轨道耦合对Pt附加层产生的电子态的能量色散产生了强烈的改变,并产生了某些具有狄拉克锥形状的量子态。

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