论文标题

通过二维铁电在2SE3底物的极化转换驱动的过渡金属二聚体的大垂直磁各向异性

Large perpendicular magnetic anisotropy of transition metal dimers driven by polarization switching of two-dimensional ferroelectric In2Se3 substrate

论文作者

Qiao, Wen, Jin, Deyou, Mi, Wenbo, Wang, Dunhui, Yan, Shiming, Xu, Xiaoyong, Zhou, Tiejun

论文摘要

大型垂直磁各向异性(MA)非常需要实现原子尺度磁数据存储,这代表了磁记录密度的最终极限。在这项工作中,我们研究了过渡金属二聚体Co-OS,Co-CO和OS-OS的MA,并在2Se3(In2Se3-Coos,In2Se3-Osco,In2Se3-Osco,In2Se3-Coco和In2Se3-Osos)上吸附在二维铁电上,并被第一Promciples计算。发现In2se3-Coos中的Co-OS二聚体的总垂直磁各向异性能量(MAE)约为40 meV。特别是,由OS Atom产生的MAE高达约60 meV。大型MAE归因于高自旋轨道耦合常数和OS Atom的一倍协调。另外,二聚体的MA可以通过In2Se3的极化逆转来调节。当极化向上时,在In2Se3-Osco,In2Se3-Coco和In2Se3-Osos中,MA的简易轴向方向都是内面的,而随着极化的切换到向下,方向变得垂直。对于IN2SE3-COOS,将极化从向下切换到向下,从而将垂直MA从〜20 MeV提高到〜40 MEV。基于二阶扰动理论,我们确认DXY/DX2-Y2和DXZ/DYZ轨道的交换分裂以及在费米级附近的DZ2轨道的占领在MA随着FE的逆转而变化在MA的变化中起着重要作用。

Large perpendicular magnetic anisotropy (MA) is highly desirable for realizing atomic-scale magnetic data storage which represents the ultimate limit of the density of magnetic recording. In this work, we studied the MA of transition metal dimers Co-Os, Co-Co and Os-Os adsorbed on two-dimensional ferroelectric In2Se3 (In2Se3-CoOs, In2Se3-OsCo, In2Se3-CoCo and In2Se3-OsOs) by first-principles calculations. It is found that the Co-Os dimer in In2Se3-CoOs has large total perpendicular magnetic anisotropy energy (MAE) of ~ 40 meV. In particular, the MAE arising from Os atom is up to ~ 60 meV. The large MAE is attributed to the high spin-orbit coupling constant and the onefold coordination of Os atom. In addition, the MA of the dimers can be tuned by the polarization reversal of In2Se3. When the polarization is upward, the easy-axis directions of MA in In2Se3-OsCo, In2Se3-CoCo and In2Se3-OsOs are all in-plane, while the directions become perpendicular as the polarization is switched to downward. For the In2Se3-CoOs, switching polarization from upward to downward enhance the perpendicular MA from ~ 20 meV to ~ 40 meV. Based on the second-order perturbation theory, we confirm that the exchange splitting of dxy/dx2-y2 and dxz/dyz orbitals as well as the occupation of dz2 orbital at the vicinity of Fermi level play important roles in the changes of MA with the reversal of FE polarization of In2Se3.

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