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Effect of exchange-correlation spin-torque on spin dynamics

机译:交换相关自旋扭矩对自旋动力学的影响

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摘要

A recently proposed exchange-correlation functional within density functional theory, which ensures that the exchange-correlation magnetic field is source-free, is shown to give non-zero internal spin-torque. This spin-torque is identically zero for all conventional local and semi-local functionals. Extension of this source-free functional to the time domain is used to study the effect of the internal spin-torque on the laser induced spin-dynamics in bulk Co, Ni and interfaces of these metals with Pt. It is shown that the internal spin-torque contributes significantly to spin-dynamics only when the magneto crystalline anisotropy energy is small, as in the case of cubic bulk materials. For surfaces or interfaces, where the anisotropy energy is large, these torques are too small to cause any significant precession of spins in early times (100 fs). Furthermore, it is shown that the spin-dynamics caused by the internal spin-torque is slow compared to the inter-site spin transfer and spin-orbit mediated spin-flips.
机译:密度泛函理论中最近提出的交换相关性,其确保了交换相关磁场是无源的,显示出非零内部旋转扭矩。对于所有传统的局部和半局部功能,这种旋转扭矩相对归零。这种无源域的无源功能的扩展用于研究内部旋转扭矩对激光诱导的旋转动力学的影响,这些金属与PT的散装CO,Ni和这些金属的界面。结果表明,当磁性晶体各向异性能量小时,内部旋转扭矩才能显着地贡献自旋动态,如在立方散装材料的情况下。对于各向异性能量大的表面或界面,这些扭矩太小,不能在早期引起旋转的任何显着的动力(& 100 fs)。此外,示出由内部旋转扭矩引起的旋转动力学与位点间旋转转移和旋转轨道介导的旋转翻转相比慢。

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