物理
凝聚态物理
旋转
拓扑(电路)
反铁磁性
手性(物理)
相(物质)
镜像对称
戒指(化学)
对称性破坏
量子力学
自发对称破缺
化学
数学
显式对称破缺
有机化学
组合数学
作者
Subhadip Pradhan,Kartik Samanta,Kush Saha,Ashis Nandy
出处
期刊:Cornell University - arXiv
日期:2022-06-30
标识
DOI:10.1038/s42005-023-01385-9
摘要
Based on the first-principles electronic structure calculations and subsequent symmetry adapted effective low-energy $\textbf{k.p}$ theory, we show the switching of the vector chirality, $\kappa$, in a noncollinear antiferromagnet (AFM), Mn$_3$Sn, as an unconventional route to topological phase transition from a nodal-ring to a Weyl point semimetal. Specifically, we find that the switching of $\kappa$ leads to gaping out an elliptic nodal-ring everywhere at the Fermi-level except for a pair of points on the ring. As a consequence, the topological phase transition switches the anomalous Hall conductivity (AHC) from zero to a giant value. Furthermore, we theoretically demonstrate how the controlled manipulation of the chiral AFM order keeping $\kappa$ unaltered favors unusual rotation of Weyl-points on the ring. This in turn enables us to tune in-plane components of the AHC by a collective uniform rotations of spins in the AFM unit cell.
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