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Spin texture induced by oxygen vacancies in strontium perovskite (001) surfaces: A theoretical comparison between SrTiO3 and SrHfO3

机译:钙钛矿(001)表面氧空位引起的自旋织构:SrTiO3和SrHfO3的理论比较

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摘要

The electronic structure of SrTiO3 and SrHfO3 (001) surfaces with oxygen vacancies is studied by means of first-principles calculations. We reveal how oxygen vacancies within the first atomic layer of the SrTiO3 surface (i) induce a large antiferrodistortive motion of the oxygen octahedra at the surface, (ii) drive localized magnetic moments on the Ti 3d orbitals close to the vacancies, and (iii) form a two-dimensional electron gas localized within the first layers. The analysis of the spin texture of this system exhibits a splitting of the energy bands according to the Zeeman interaction, lowering of the Ti 3d(xy) level in comparison with d(xz) and d(yz), and also an in-plane precession of the spins. No Rashba-like splitting for the ground state or for the ab initio molecular dynamics trajectory at 400 K is recognized as suggested recently by A. F. Santander-Syro et al. [Nat. Mater. 13, 1085 (2014)]. Instead, a sizable Rashba-like splitting is observed when the Ti atom is replaced by a heavier Hf atom with a much larger spin-orbit interaction. However, we observe the disappearance of the magnetism and the surface two-dimensional electron gas when full structural optimization of the SrHfO3 surface is performed. Our results uncover the sensitive interplay of spin-orbit coupling, atomic relaxations, and magnetism when tuning these Sr-based perovskites.
机译:通过第一性原理计算研究了具有氧空位的SrTiO3和SrHfO3(001)表面的电子结构。我们揭示了SrTiO3表面的第一原子层内的氧空位如何(i)诱导表面八面体的氧的大反铁畸变运动,(ii)驱动靠近空位的Ti 3d轨道上的局部磁矩,和(iii )形成位于第一层内的二维电子气。该系统的自旋织构的分析显示出根据塞曼相互作用的能带分裂,与d(xz)和d(yz)相比,Ti 3d(xy)含量降低。旋转的进动。正如A. F. Santander-Syro等人最近所建议的那样,没有发现对于基态或在400 K时从头算起的分子动力学轨迹的Rashba样分裂。 [Nat。母校13,1085(2014)]。取而代之的是,当Ti原子被具有更大自旋轨道相互作用的重Hf原子取代时,会观察到相当大的Rashba状分裂。但是,当对SrHfO3表面进行完全结构优化时,我们观察到了磁性和表面二维电子气的消失。我们的结果揭示了当调谐这些基于Sr的钙钛矿时,自旋轨道耦合,原子弛豫和磁性之间的敏感相互作用。

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