论文标题
Dzyaloshinskii-Moriya互动的半现实紧密结合模型
Semi-realistic tight-binding model for Dzyaloshinskii-Moriya interaction
论文作者
论文摘要
在这项工作中,我们讨论了过渡金属异质结构中Dzyaloshinskii-Moriya相互作用(DMI)的性质。我们首先使用Keldysh形式主义得出了小空间梯度极限中DMI的表达。这种推导为我们提供了绿色的功能公式,该公式非常适合结合结合的汉密尔顿人。使用该工具,我们首先揭示了轨道混合的作用:使用玩具模型和代表过渡金属异质结构的逼真的多轨汉密尔顿,我们表明对称性破裂使界面轨道动量的开始是DMI的起源。然后,我们研究了不同层对DMI的贡献,并揭示了它可以根据费米能量在几个非磁性金属层上膨胀,从而揭示了频带结构的复杂轨道质地。最后,我们检查了DMI对铁磁和非磁性金属厚度的厚度依赖性,我们发现,尽管前者仍然非常弱,但后者可能很大。
In this work, we discuss the nature of Dzyaloshinskii-Moriya interaction (DMI) in transition metal heterostructures. We first derive the expression of DMI in the small spatial gradient limit using Keldysh formalism. This derivation provides us with a Green's function formula that is well adapted to tight-binding Hamiltonians. With this tool, we first uncover the role of orbital mixing: using both a toy model and a realistic multi-orbital Hamiltonian representing transition metal heterostructures, we show that symmetry breaking enables the onset of interfacial orbital momentum that is at the origin of the DMI. We then investigate the contribution of the different layers to the DMI and reveal that it can expand over several nonmagnetic metal layers depending on the Fermi energy, thereby revealing the complex orbital texture of the band structure. Finally, we examine the thickness dependence of DMI on both ferromagnetic and nonmagnetic metal thicknesses and we find that whereas the former remains very weak, the latter can be substantial.