论文标题

隐藏的局部对称性破裂在kagome晶格磁性Weyl半度

Hidden local symmetry breaking in a kagome-lattice magnetic Weyl semimetal

论文作者

Zhang, Qiang, Zhang, Yuanpeng, Matsuda, Masaaki, Garlea, Vasile O, Yan, Jiaqiang, McGuire, Michael A., Tennant, D. Alan, Okamoto, Satoshi

论文摘要

探索有趣的物理特性与结构复杂性之间的关系是研究现代功能材料的核心主题。 Co $ _ {3} $ sn $ _ {2} $ s $ _ {2} $,一种新发现的Kagome-lattice磁性Weyl半学,由于拓扑半学状态与特殊磁性属性之间的紧密耦合,引起了强烈的兴趣。但是,在这种有序化合物中,磁相分离和旋转玻璃状态的起源是$ t_ {c} $的起源,在理解其磁性方面是两个未解决但重要的难题。在这里,我们报告了当地对称性破坏的发现,与Co $ _ {3} $ sn $ _ {2} $ s $ _ {2} $的铁磁顺序的结合,通过中子总散射和半极化的中子化中子差异。本地和平均对称性的不匹配发生在$ t_ {c} $以下,表明Co $ _ {3} $ sn $ _ {2} $ s $ _ {2} $在建立Ferromagnetic时会演变为本质上晶格失调的系统。内在晶格障碍的局部对称性破裂为令人困惑的磁性特性提供了新的理解。我们的密度函数理论计算表明,局部对称性破裂有望重新定向局部铁磁矩,从而揭示了与晶格不稳定性相关的铁磁不稳定性的存在。此外,DFT计算揭示了局部对称性破坏可能会通过破坏镜面平面影响Weyl性质。我们的发现突出了当地对称性破坏的根本重要作用在促进我们对Co $ _ {3} $ sn $ _ {2} $ s $ _ {2} $ _ {2} $中的磁性和拓扑特性的理解方面发挥了重要作用,该$ _ {2} $可能会引起人们的注意,以吸引人们探索被忽视的本地对称性折磨,以探索Co $ _ $ _ $ _ $ _ {2} $ s {2} $ _____________________________2衍生物,更广泛地在其他拓扑狄拉克/Weyl半法和kagome-lattice磁铁中。

Exploring the relationship between intriguing physical properties and structural complexity is a central topic in studying modern functional materials. Co$_{3}$Sn$_{2}$S$_{2}$, a new discovered kagome-lattice magnetic Weyl semimetal, has triggered intense interest owing to the intimate coupling between topological semimetallic states and peculiar magnetic properties. However, the origins of the magnetic phase separation and spin glass state below $T_{C}$ in this ordered compound are two unresolved yet important puzzles in understanding its magnetism. Here, we report the discovery of local symmetry breaking surprisingly co-emerges with the onset of ferromagnetic order in Co$_{3}$Sn$_{2}$S$_{2}$, by a combined use of neutron total scattering and half polarized neutron diffraction. The mismatch of local and average symmetries occurs below $T_{C}$, indicating that Co$_{3}$Sn$_{2}$S$_{2}$ evolves to an intrinsically lattice disordered system when the ferromagnetic order is established. The local symmetry breaking with intrinsic lattice disorder provides new understandings to the puzzling magnetic properties. Our density function theory calculation indicates that the local symmetry breaking is expected to reorient local ferromagnetic moments, unveiling the existence of the ferromagnetic instability associated with the lattice instability. Furthermore, DFT calculation unveils that the local symmetry breaking could affect the Weyl property by breaking mirror plane. Our findings highlight the fundamentally important role that the local symmetry breaking plays in advancing our understanding on the magnetic and topological properties in Co$_{3}$Sn$_{2}$S$_{2}$, which may draw the attention to explore the overlooked local symmetry breaking in Co$_{3}$Sn$_{2}$S$_{2}$, its derivatives, and more broadly in other topological Dirac/Weyl semimetals and kagome-lattice magnets.

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