论文标题

ZR2S的表面引起的铁磁和异常大厅的运输(001)

Surface-induced ferromagnetism and anomalous Hall transport at Zr2S(001)

论文作者

Liu, Shuyuan, Luo, Yanwei, Wang, Chongze, Jeon, Hyunsoo, Jia, Yu, Cho, Jun-Hyung

论文摘要

阳离子层之间的间隙空间中具有阴离子多余电子的二维分层电气因其在基本研究和技术应用中的有希望的机会而引起了很多关注。使用第一原理计算,我们预测分层的电气Zr2s是非磁性的,源自ZR-4D阳离子和层间阴离子阴离子电子的巨大Dirac节点线状态。然而,Zr2s(001)表面在表面电势引起的费米水平上增加了状态的密度,从而通过石骨不稳定性在最外层的ZR层处诱导铁磁顺序。因此,表面上的时间交流对称性破裂不仅产生具有复杂的螺旋自旋纹理的高度自旋偏振拓扑表面状态,而且还产生了源自由自旋轨道耦合产生的浆果曲率的固有的异常霍尔效应。我们的发现提供了一个游乐场,以研究非磁性拓扑电气表面的铁磁和异常大厅的出现。

Two-dimensional layered electrides possessing anionic excess electrons in the interstitial spaces between cationic layers have attracted much attention due to their promising opportunities in both fundamental research and technological applications. Using first-principles calculations, we predict that the layered bulk electride Zr2S is nonmagnetic with massive Dirac nodal-line states arising from Zr-4d cationic and interlayer anionic electrons. However, the Zr2S(001) surface increases the density of states at the Fermi level caused by the surface potential, thereby inducing a ferromagnetic order at the outermost Zr layer via the Stoner instability. Consequently, the time-reversal symmetry breaking at the surface not only generates highly spin-polarized topological surface states with intricate helical spin textures, but also hosts an intrinsic anomalous Hall effect originating from the Berry curvature generated by spin-orbit coupling. Our findings offer a playground to investigate the emergence of ferromagnetism and anomalous Hall transport at the surface of nonmagnetic topological electrides.

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