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在对称性约束下,韦尔节点合并过程的稳定性
Gabriele Naselli1, György Frank2, Dániel Varjas1,2,3
1Institute for Theoretical Solid State Physics, <a href="https://ror.org/04zb59n70">IFW Dresden and Würzburg-Dresden Cluster of Excellence ct.qmat</a>, Helmholtzstr. 20, 01069 Dresden, Germany.
Physical review letters
|November 22, 2024
概括
韦尔半金属中的对称性使韦尔节点的复杂合并成为可能. 与直觉相反,三节点的合并比两节点的合并更常见,这表明量子材料的应用范围更广.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 量子材料是一种量子材料.
- 拓学材料 拓学材料
背景情况:
- 韦尔半金属是韦尔节点的宿主,其数量通过合并过程而改变.
- 合并通常涉及对负荷相反的节点,复杂的多节点合并不太稳定,需要微调.
研究的目的:
- 研究对称度对韦尔节点合并过程及其稳定性的影响.
- 专注于双旋转和时间逆转 (C_{2}T) 对称性的联合效应.
主要方法:
- 在韦尔节点合并时对称性约束的理论分析.
- 检查多个韦尔节点的合并过程.
主要成果:
- 对称性,特别是C_{2}T,允许更通用的多维尔节点合并.
- 与直觉相反,发现三节点合并过程比两节点合并更加通用.
- 合并过程的稳定性与所涉及的对称性直接相关.
结论:
- 多维尔节点合并不仅限于微调的场景,并且在特定对称性下可以更通用.
- 像SrSi2和双层石墨烯这样的量子材料是观察多维尔融合的潜在候选者.
- 这些发现扩大了对量子材料中拓相变的理解.
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