Institute for Theoretical Physics, University of Regensburg, 93040 Regensburg, Germany.
Phys Rev Lett. 2013 Jul 19;111(3):036603. doi: 10.1103/PhysRevLett.111.036603. Epub 2013 Jul 17.
The microscopic structure of spin-orbit fields for the technologically important Fe/GaAs interface is uncovered from first principles. A symmetry based method allows us to obtain the spin-orbit fields-both their magnitude and orientation-for a generic Bloch state, from the electronic band structure for any in-plane magnetization orientation. It is demonstrated that the spin-orbit fields depend not only on the electric field across the interface, but also surprisingly strongly on the Fe magnetization orientation, opening prospects for their magnetic control. These results give important clues in searching for spin-orbit transport and optical phenomena in ferromagnet/nonmagnet heterostructures.
从第一性原理揭示了技术上重要的 Fe/GaAs 界面的自旋轨道场的微观结构。基于对称的方法使我们能够从任何面内磁化方向的电子能带结构中获得自旋轨道场的大小和方向,对于任意布洛赫态都是如此。结果表明,自旋轨道场不仅取决于界面上的电场,而且令人惊讶地强烈依赖于 Fe 磁化方向,这为其磁性控制开辟了前景。这些结果为在铁磁体/非磁体异质结构中寻找自旋轨道输运和光学现象提供了重要线索。