论文标题
用S $ _ {4} $对称的Weyl半金属的高通量筛选
High-throughput screening for Weyl Semimetals with S$_{4}$ Symmetry
论文作者
论文摘要
基于不可约的表示(或对称特征值)和兼容性关系,可以预测材料是拓扑/琐碎的绝缘子[满足兼容性关系]或拓扑半学[违反兼容性关系]。但是,Weyl半法通常超出了这种基于对称性的策略。换句话说,无论其占领带满足兼容性关系,还是对称指标为零,Weyl节点都可以在材料中出现。在这项工作中,我们为具有S $ _4 $对称系统的系统提出了一个新的拓扑不变$χ$ [即,不正确的旋转s $ _4 $($ \ equiv $ ic $ _ {4z} $)是适当的四倍旋转(c $ _ {4z} $),遵循inversion(c $ _ {4z} $),始于Inversie(我),以eldersien(我可以诊断为elversion)。此外,可以通过一维Wilson-Loop技术轻松计算$χ$。通过将此方法应用于第一原理计算中的高通量筛选,我们可以预测非磁性化合物和磁化合物中的许多Weyl半学。在预测的Weyl半学中发现了各种有趣的特性(例如磁挫败感,超导性和自旋玻璃顺序等),这些属性为未来的实验研究提供了对Weyl Fermions与其他外来状态之间相互作用的实验性研究。
Based on irreducible representations (or symmetry eigenvalues) and compatibility relations, a material can be predicted to be a topological/trivial insulator [satisfying compatibility relations] or a topological semimetal [violating compatibility relations]. However, Weyl semimetals usually go beyond this symmetry-based strategy. In other words, Weyl nodes could emerge in a material, no matter if its occupied bands satisfy compatibility relations, or if the symmetry indicators are zero. In this work, we propose a new topological invariant $χ$ for the systems with S$_4$ symmetry [i.e., the improper rotation S$_4$ ($\equiv$ IC$_{4z}$) is a proper four-fold rotation (C$_{4z}$) followed by inversion (I)], which can be used to diagnose the Weyl semimetal phase. Moreover, $χ$ can be easily computed through the one-dimensional Wilson-loop technique. By applying this method to the high-throughput screening in first-principles calculations, we predict a lot of Weyl semimetals in both nonmagnetic and magnetic compounds. Various interesting properties (e.g. magnetic frustration effects, superconductivity and spin-glass order, etc.) are found in predicted Weyl semimetals, which provide realistic platforms for future experimental study of the interplay between Weyl fermions and other exotic states.