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Theoretical study of the electronic excited states in ultrathin ionic layers supported on metal surfaces: NaCl/Cu(111)

机译:金属表面负载超薄离子层电子激发态的理论研究:NaCl / Cu(111)

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摘要

We present a theoretical study of the electronic excited states in ultrathin ionic layers supported on metal surfaces. We have studied 1, 2, 3, and 4 monolayers of NaCl on a Cu(111) surface. Energies, lifetimes, and associated wave functions of the excited states have been obtained with a joint, model potential–wave packetpropagation approach. The excited state with the lowest energy has the character of an image potential state repelled from the surface by the NaCl layer. The next two states present a mixed character of image potential states and NaCl layer states corresponding to the quantization of the conduction band in the finite-size layer. Wediscuss the role of the layer thickness in decoupling these states from the metal surface and how it affects their lifetime
机译:我们目前对金属表面支撑的超薄离子层中电子激发态的理论研究。我们已经研究了Cu(111)表面上的1、2、3和4个NaCl单层。能量,寿命和激发态的相关波函数已通过联合模型电势-波包传播方法获得。具有最低能量的激发态具有由NaCl层从表面排斥的图像电位态的特征。接下来的两个状态呈现图像电势状态和NaCl层状态的混合特性,对应于有限尺寸层中导带的量化。我们讨论了层厚度在将这些状态与金属表面解耦中的作用以及它如何影响其寿命

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