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Atomic and electronic structures of Sn covered W(110) surface

机译:SN的原子和电子结构覆盖W(110)表面

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The effects of spin-orbit coupling on the atomic and electronic structures of clean W(110) surface and Sn deposited W(110) surface are studied using the Density Functional Theory. While the relaxed atomic geometry remains unaffected, there are changes in the surface electronic states with the inclusion of spin-orbit coupling. For the clean W(110) surface, we have identified a total of three surface and one resonance states, and discussed the anisotropic behaviour of Dirac-like states. With increasing Sn monolayer coverages on the W(110)-(1x4) slab, the Dirac-like cone behaviour is found to progressively distort, and Sn-derived states develop. For a (1x1) prototypical model of monolayer Sn coverage, we have calculated the maximum splittings of 0.10 eV and 0.52 eV for the two surface states characterised mainly by the W 3d(5/2) and W 3d(3/2) orbitals.
机译:使用密度函数理论研究了旋转轨道耦合对清洁W(110)表面和Sn沉积W(110)表面的原子和电子结构的影响。 虽然放松的原子几何形状仍未受到影响,但表面电子状态具有包括旋转轨道耦合的表面电子状态的变化。 对于清洁W(110)表面,我们已经鉴定了总共三个表面和一个共振状态,并讨论了狄拉氏状态的各向异性行为。 随着W(110) - (1x4)板上的Sn单层覆盖物增加,发现狄拉氏锥形行为逐渐变形,并且SN衍生的状态发展。 对于单层SN覆盖的(1x1)的原型模型,我们已经计算了0.10eV和0.52eV的最大分裂,其两个表面状态主要由W 3D(5/2)和W 3D(3/2)轨道。

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