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Magnetic anisotropy of iridium dimers on two-dimensional materials

机译:二维材料上铱二聚体的磁各向异性

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Magnetic dimers with very large magnetic anisotropy have great potential in information storage applications. By using density functional theory calculations (DFT), we systematically investigated the magnetic anisotropy energy (MAE) of bi-iridium (Ir-2) dimers on four types of graphene-like two-dimensional (2D) material substrates. We considered four possible adsorption sites for Ir-2 on each substrate. The Ir-2 dimer prefers to remain at the single vacancy site with the largest binding energy for all the 2D materials considered. The spin moment and MAE of Ir-2 can be largely affected by the substrate. On the substrate of germanene, the MAE of Ir-2 can be enlarged to approximately 100 meV, even with the higher Ir-2 areal density of 1.804 nm(-2). Moreover, the direction of the easy magnetization axis is determined by the d states in the vicinity of the Fermi level. The present DFT results can be understood with the help of perturbation theory analysis.
机译:具有非常大的磁各向异性的磁性二聚体在信息存储应用中具有很大的潜力。 通过使用密度函数理论计算(DFT),我们系统地研究了双铱(IR-2)二聚体的磁各向异性能量(MAE)在四种类型的石墨形二维(2D)材料基材上。 我们在每个基板上考虑了IR-2的四个可能的吸附位点。 IR-2二聚体更喜欢在所考虑的所有2D材料中保留在单个空位位点,最大的粘合能量。 IR-2的旋转力矩和MAE可以很大程度上受到基材的影响。 在锗的基材上,IR-2的MAE可以扩大到大约100 meV,即使IR-2的IR-2面积密度为1.804nm(-2)。 此外,易于磁化轴的方向由FERMI水平附近的D状态确定。 随着扰动理论分析的帮助,可以理解目前的DFT结果。

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