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Strain-tunable magnetic anisotropy in two-dimensional Dirac half-metals: nickel trihalides

机译:二维Dirac半金属中应变可调磁各向异性:镍三卤化物

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The recent discovery of intrinsic two-dimensional (2D) ferromagnetism has sparked intense interest due to the potential applications in spintronics. Magnetic anisotropy energy defines the stability of magnetization in a specific direction with respect to the crystal lattice and is an important parameter for nanoscale applications. In this work, using first-principles calculations we predict that 2D NiX3 (X = Cl, Br, and I) can be a family of intrinsic Dirac half-metals characterized by a band structure with an insulator gap in one spin channel and a Dirac cone in the other. The combination of 100% spin polarization and massless Dirac fermions renders the monolayer NiX3 a superior candidate material for efficient spin injection and high spin mobility. The NiX3 is dynamically and thermodynamically stable up to high temperature and the magnetic moment of about 1 mu(B) per Ni3+ ion is observed with high Curie temperature and large magnetic anisotropy energy. Moreover, detailed calculations of their energetics, atomic structures, and electronic structures under the influence of a biaxial strain epsilon have been carried out. The magnetic anisotropy energy also exhibits a strain dependence in monolayer NiX3. The hybridization between Ni d(xy) and d(x2-y2) orbitals gives the largest magnetic anisotropy contribution, whether for the off-plane magnetized NiCl3 (NiBr3) or the in-plane magnetized NiI3. The outstanding attributes of monolayer NiX3 will substantially broaden the applicability of 2D magnetism for a wide range of applications.
机译:由于闪电类别中的潜在应用,最近的内在二维(2D)铁磁性的发现引起了激烈的兴趣。磁各向异性能量在相对于晶格中确定在比方向上的磁化稳定性,是纳米级应用的重要参数。在这项工作中,使用第一原理计算,我们预测2D nix3(x = cl,br和i)可以是一个内在的狄拉姆半金属,其特征在于一个带有一个旋转通道和狄拉克的绝缘体间隙的带结构锥在另一个。 100%自旋极化和无麻的组合使单层Nix3使单层NiX3成为高效旋转注射和高自旋迁移率的优异候选材料。 NIX3动态地和热力学上稳定到高温,并且通过高居里温度和大磁各向异性能量观察到每Ni3 +离子的约1μm(b)的磁矩。此外,已经进行了在双轴菌株Epsilon的影响下的能量学,原子结构和电子结构的详细计算。磁各向异性能量也表现出在单层NIX3中的应变依赖性。 Ni D(XY)和D(X2-Y2)轨道之间的杂交给出了最大的磁各向异性贡献,无论是偏离平面磁化的NiCl3(nibr3)还是在平面内磁化的NiI3。单层NIX3的出色属性将大大拓宽2D磁性对各种应用的适用性。

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    《RSC Advances 》 |2019年第61期| 共10页
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  • 正文语种 eng
  • 中图分类 化学 ;
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