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Circular-polarized-light-induced spin polarization characterized for the Dirac-cone surface state at W(110) with C2v symmetry

机译:圆偏振光诱导的自旋极化的特征是在C(2v)对称的W(110)处的狄拉克锥表面状态

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摘要

The C2v surface symmetry of W(110) strongly influences a spin-orbit-induced Dirac-cone-like surface state and its characterization by spin- and angle-resolved photoelectron spectroscopy. In particular, using circular polarized light, a distinctive >k-dependent spin texture is observed along the ΓH¯ direction of the surface Brillouin zone. For all spin components Px, Py, and Pz, non-zero values are detected, while the initial-state spin polarization has only a Py component due to mirror symmetry. The observed complex spin texture of the surface state is controlled by transition matrix element effects, which include orbital symmetries of the involved electron states as well as the geometry of the experimental set-up.
机译:W(110)的C2v表面对称性强烈影响自旋轨道诱导的狄拉克锥状表面状态及其通过自旋和角度分辨光电子能谱表征。特别是,使用圆偏振光,沿着 k 自旋纹理=“ M2” overflow =“ scroll”> <移动器重音=“ true”> <移动> Γ H < / mrow> ¯ 布里渊区域的方向。对于所有自旋分量Px,Py和Pz,检测到非零值,而由于镜像对称,初始状态的自旋极化仅具有Py分量。所观察到的表面状态的复杂自旋织构受过渡矩阵元素效应的控制,该效应包括所涉及电子态的轨道对称性以及实验装置的几何形状。

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