物理
相同粒子
百科全书
类型(生物学)
对称(几何)
齐次空间
哈密顿量(控制论)
理论物理学
旋转对称性
量子力学
计算机科学
数学
几何学
生物
量子
图书馆学
数学优化
机械
生态学
作者
Zeying Zhang,Gui‐Bin Liu,Zhi-Ming Yu,Shengyuan A. Yang,Yugui Yao
出处
期刊:Physical review
日期:2022-03-25
卷期号:105 (10)
被引量:27
标识
DOI:10.1103/physrevb.105.104426
摘要
The research on emergent particles in condensed matters has been attracting tremendous interest, and recently it is extended to magnetic systems. Here, we study the emergent particles stabilized by the symmetries of type-IV magnetic space groups (MSGs). Type-IV MSGs feature a special time reversal symmetry $\{\mathcal{T}|\boldsymbol{t}_0\}$, namely, the time reversal operation followed by a half lattice translation, which significantly alters the symmetry conditions for stabilizing the band degeneracies. In this work, based on symmetry analysis and modeling, we present a complete classification of emergent particles in type-IV MSGs by studying all possible (spinless and spinful, essential and accidental) particles in each of the 517 type-IV MSGs. Particularly, the detailed correspondence between the emergent particles and the type-IV MSGs that can host them are given in easily accessed interactive tables, where the basic information of the emergent particles, including the symmetry conditions, the effective Hamiltonian, the band dispersion and the topological characters can be found. According to the established encyclopedia, we find that several emergent particles that are previously believed to exist only in spinless systems will occur in spinful systems here, and vice versa, due to the $\{{\cal T}|\boldsymbol{t}_{0}\}$ symmetry. Our work not only deepens the understanding of the symmetry conditions for realizing emergent particles but also provides specific guidance for searching and designing materials with target particles.
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