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Microscopic origin of spin-orbit torque in ferromagnetic heterostructures: A first-principles approach

机译:铁磁异质结构中自旋轨道转矩的微观起源:第一性原理

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摘要

We present an ab initio based theoretical framework which elucidates the origin of the spin-orbit torque (SOT) in normal-metal (NM)/ferromagnet (FM) heterostructures. The SOT is decomposed into two contributions, namely, spin-Hall and the spin-orbital components. We find that (ⅰ) the fieldlike (FL) SOT is dominated by the spin-orbital component and (ⅱ) both components contribute to the dampinglike (DL) torque with comparable magnitude in the limit of thick Pt film. The contribution of the spin-orbital component to the DL-SOT is present only for NMs with strong SOC coupling strength. We demonstrate that the FL-SOT can be expressed in terms of the nonequilibrium spin-resolved orbital moment accumulation. The calculations reveal that the experimentally reported oxygen-induced sign reversal of the FL-SOT in Pt/Co bilayers is due to the significant reduction of the majority-spin orbital moment accumulation on the interfacial NM atoms.
机译:我们提出了一个从头开始的理论框架,阐明了正常金属(NM)/铁磁体(FM)异质结构中自旋轨道转矩(SOT)的起源。 SOT被分解为两个贡献,即自旋霍尔和自旋轨道分量。我们发现(ⅰ)场状(FL)SOT由自旋轨道分量主导,并且(ⅱ)这两个分量在厚Pt膜的极限内以相当的幅度贡献了阻尼似(DL)扭矩。仅对于具有强大SOC耦合强度的NM,才存在自旋轨道分量对DL-SOT的贡献。我们证明,FL-SOT可以用非平衡自旋分辨轨道矩积累来表示。计算表明,Pt / Co双层中FL-SOT的氧诱导的符号反转的实验报道是由于界面NM原子上多数自旋轨道矩积聚的显着减少。

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  • 来源
    《Physical review》 |2020年第6期|060405.1-060405.6|共6页
  • 作者单位

    Department of Physics and Astronomy California State University Northridge California 91330 USA;

    Department of Electrical and Computer Engineering National University of Singapore Singapore 117576 Singapore;

    Physics Department University of Texas at El Paso El Paso Texas 79968 USA;

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