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二维空间中的八重简并费米子。

Eightfold Degenerate Fermions in Two Dimensions.

作者信息

Guo Peng-Jie, Wei Yi-Wen, Liu Kai, Liu Zheng-Xin, Lu Zhong-Yi

机构信息

Songshan Lake Materials Laboratory, Dongguan, Guangdong 523808, China.

Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Phys Rev Lett. 2021 Oct 22;127(17):176401. doi: 10.1103/PhysRevLett.127.176401.

Abstract

Multifold degenerate fermions have attracted a lot of research interest in condensed matter physics and materials science, but always lack in two dimensions. In this Letter, from symmetry analysis and lattice model construction, we demonstrate that eightfold degenerate fermions can be realized in two-dimensional systems. In nonmagnetic materials with negligible spin-orbit coupling, the gray magnetic space groups together with SU(2) spin rotation symmetry can protect the two-dimensional eightfold degenerate fermions on a certain high-symmetry axis in the Brillouin zone, no matter whether the system is centrosymmetric or noncentrosymmetric. In antiferromagnetic materials, the eightfold degenerate fermions can also be protected by certain "spin space groups." Furthermore, by first-principles electronic structure calculations, we predict that the paramagnetic phase of the monolayer LaB_{8} on a suitable substrate is a two-dimensional eightfold degenerate as well as Dirac node-line semimetal. Especially, the eightfold degenerate points are close to the Fermi level, which makes monolayer LaB_{8} a good platform to study the exotic physical properties of two-dimensional eightfold degenerate fermions.

摘要

多重简并费米子在凝聚态物理和材料科学领域引起了广泛的研究兴趣,但在二维系统中却一直缺失。在本信函中,通过对称性分析和晶格模型构建,我们证明了二维系统中可以实现八重简并费米子。在自旋轨道耦合可忽略不计的非磁性材料中,灰色磁空间群与SU(2)自旋旋转对称性一起,可以在布里渊区的特定高对称轴上保护二维八重简并费米子,无论系统是中心对称还是非中心对称。在反铁磁材料中,八重简并费米子也可以由某些“自旋空间群”保护。此外,通过第一性原理电子结构计算,我们预测在合适衬底上的单层LaB₈的顺磁相是二维八重简并以及狄拉克节线半金属。特别地,八重简并点接近费米能级,这使得单层LaB₈成为研究二维八重简并费米子奇异物理性质的良好平台。

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