School of Physics and Technology, University of Jinan, Jinan 250022, China.
Nanoscale. 2018 Jul 19;10(28):13645-13651. doi: 10.1039/c8nr02761g.
A Dirac half-metal material, which has a gapped band structure in one spin channel but Dirac cones in the other, combines two intriguing properties of 100% spin polarization and massless Dirac fermions and has recently started to attract increasing attention. In this work, using first-principles calculations we predict that the disodium carbide (Na2C) monolayer is an intrinsic 2p Dirac half-metal material with 12 fully spin-polarized and symmetry-protected Dirac cones, and a slightly gapped (53 meV) spin-polarized nodal line coexisting in one spin channel, leaving the other spin channel insulated with a gap of 1.9 eV. There are two kinds of Dirac cones in Na2C, protected by different crystalline symmetries, both of which are robust against biaxial strains (±5%) and spin-orbit coupling effects, with Fermi velocities of up to 5.2 × 105 m s-1. Ferromagnetism is mainly contributed to by the unpaired 2p electrons in the carbon, with a Curie temperature estimated to be 382 K, and the origin of the 2p magnetism could be explained by the superexchange mechanism between C2- anions with the Na+ cation as a bridge. Our results not only indicate a promising candidate for high-speed spintronic devices, but also reveal the hidden mechanism of the origin of symmetric protection and ferromagnetic exchange interactions in a Dirac semi-metal, which would provide a feasible strategy for the design of Dirac materials.
一种具有一个自旋通道带隙结构但另一个自旋通道存在狄拉克锥的狄拉克半金属材料,结合了 100%自旋极化和无质量狄拉克费米子的两个有趣特性,最近开始引起越来越多的关注。在这项工作中,我们通过第一性原理计算预测,碳化二钠(Na2C)单层是一种本征的 2p 狄拉克半金属材料,具有 12 个完全自旋极化且受对称保护的狄拉克锥,以及一个在一个自旋通道中存在轻微带隙(53 meV)的自旋极化节线,而另一个自旋通道则被 1.9 eV 的能隙隔开。在 Na2C 中有两种狄拉克锥,受不同晶体对称性的保护,它们都对双轴应变(±5%)和自旋轨道耦合效应具有鲁棒性,费米速度高达 5.2×105 m s-1。铁磁性主要由碳中的不成对 2p 电子贡献,居里温度估计为 382 K,2p 磁性的起源可以通过 C2-阴离子与 Na+阳离子作为桥的超交换机制来解释。我们的结果不仅表明了一种有前途的高速自旋电子器件候选材料,还揭示了狄拉克半金属中对称保护和铁磁交换相互作用的隐藏机制,这为狄拉克材料的设计提供了一种可行的策略。