论文标题

p \ textsubscript {x},p \ textSubscript {y}衍生的rashba旋转旋转旋转旋转旋转旋转旋转旋转旋转旋转曲线的轨道增强的翘曲效果

Orbital-enhanced Warping Effect in P\textsubscript{x},P\textsubscript{y}-derived Rashba Spin Splitting of Monatomic Bismuth Surface Alloy Surface Alloy

论文作者

Chen, Guan-Yu, Huang, Angus, Lin, Yen-Hui, Chen, Chia-Ju, Lin, Deng-Sung, Chang, Po-Yao, Jeng, Horng-Tay, Bihlmayer, Gustav, Hsu, Pin-Jui

论文摘要

Spin-Split Rashba频段已被利用,以有效控制移动电子的自旋自由度,该自由度具有设计自旋设备和处理基于自旋的信息的边界应用中的巨大潜力。鉴于反转对称性和较大的自旋轨道相互作用的内在断裂,由重金属元素形成的二维(2D)表面合金表现出明显的Rashba型自旋分裂。在这里,我们揭示了原子轨道对称性在六角形的rashba旋转式表面状态中的$ \ sqrt {3} \ times \ sqrt {3} r30^{\ circ} $ bicu $ _ {2} $ _ {2} $ notatomic Alloy tunnely tumsocy and spectrosce and spectrosce and de spectrosce(从$ \ mathrm {d} i/\ mathrm {d} u $ spectra和计算出的频带结构中,已经在未销售的能量区域中鉴定出了从不同轨道对称性的三个孔状rashba-split频段。由于六角形变形的费米表面,准粒子干扰(QPI)映射已解析了从\ textit {p $ _ {x},$ p $ _ {y {y} $} $} $} $ _} $ _} $ _ {$ m_ {j} = 1/2 $)band的\ textit {p $ _ {x},$ _ {x},$ p $ _ {x}开放的散射通道。与\ textit {s,p $ _ {z} $} - 派生的频带,六角形翘曲主要伴随着大量的平面外旋转极化$ s_ {z {z} $最高24 \%\%\%\% \ textit {p $ _ {x} $,p $ _ {y} $}($ m_ {j} = 1/2 $)带有面内轨道对称性的频段。

Spin-split Rashba bands have been exploited to efficiently control the spin degree of freedom of moving electrons, which possesses a great potential in frontier applications of designing spintronic devices and processing spin-based information. Given that intrinsic breaking of inversion symmetry and sizeable spin-orbit interaction, two-dimensional (2D) surface alloys formed by heavy metal elements exhibit a pronounced Rashba-type spin splitting of the surface states. Here, we have revealed the essential role of atomic orbital symmetry in the hexagonally warped Rashba spin-split surface state of $\sqrt{3}\times\sqrt{3} R30^{\circ}$ BiCu$_{2}$ monatomic alloy by scanning tunneling spectroscopy (STS) and density functional theory (DFT). From $\mathrm{d}I/\mathrm{d}U$ spectra and calculated band structures, three hole-like Rashba-split bands hybridized from distinct orbital symmetries have been identified in the unoccupied energy region. Because of the hexagonally deformed Fermi surface, quasi-particle interference (QPI) mappings have resolved scattering channels opened from interband transitions of \textit{p$_{x},$p$_{y}$}($m_{j}=1/2$) band. In contrast to the \textit{s,p$_{z}$}-derived band, the hexagonal warping predominately is accompanied by substantial out-of-plane spin polarization $S_{z}$ up to 24\% in the dispersion of \textit{p$_{x}$,p$_{y}$}($m_{j}=1/2$) band with an in-plane orbital symmetry.

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