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Toward surface orbitronics: giant orbital magnetism from the orbital Rashba effect at the surface of sp-metals

机译:走向表面生物电子学:sp-金属表面的轨道Rashba效应产生的巨大轨道磁

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摘要

As the inversion symmetry is broken at a surface, spin-orbit interaction gives rise to spin-dependent energy shifts – a phenomenon which is known as the spin Rashba effect. Recently, it has been recognized that an orbital counterpart of the spin Rashba effect – the orbital Rashba effect – can be realized at surfaces even without spin-orbit coupling. Here, we propose a mechanism for the orbital Rashba effect based on sp orbital hybridization, which ultimately leads to the electric polarization of surface states. For the experimentally well-studied system of a BiAg2 monolayer, as a proof of principle, we show from first principles that this effect leads to chiral orbital textures in k-space. In predicting the magnitude of the orbital moment arising from the orbital Rashba effect, we demonstrate the crucial role played by the Berry phase theory for the magnitude and variation of the orbital textures. As a result, we predict a pronounced manifestation of various orbital effects at surfaces, and proclaim the orbital Rashba effect to be a key platform for surface orbitronics.
机译:由于反对称性在表面被破坏,自旋轨道相互作用会引起自旋相关的能量转移-这种现象被称为自旋Rashba效应。最近,人们认识到,即使没有自旋轨道耦合,也可以在表面上实现自旋Rashba效应的轨道对应物-轨道Rashba效应。在这里,我们提出了一种基于sp轨道杂交的轨道Rashba效应的机制,该机制最终导致表面态的电极化。对于BiAg2单层的实验研究充分的系统,作为原理的证明,我们从第一原理开始表明,这种效应导致k空间中的手性轨道纹理。在预测由轨道Rashba效应引起的轨道力矩的大小时,我们证明了Berry相理论在轨道纹理的大小和变化中所起的关键作用。结果,我们预测了表面上各种轨道效应的明显表现,并宣布轨道Rashba效应是表面生物电子的关键平台。

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