Riberolles S X M, Slade Tyler J, Han Tianxiong, Li Bing, Abernathy D L, Canfield P C, Ueland B G, Orth P P, Ke Liqin, McQueeney R J
Ames National Laboratory, Ames, IA, 50011, USA.
Department of Physics and Astronomy, Iowa State University, Ames, IA, 50011, USA.
Nat Commun. 2024 Feb 21;15(1):1592. doi: 10.1038/s41467-024-45841-8.
Magnetic kagome metals are a promising platform to develop unique quantum transport and optical phenomena caused by the interplay between topological electronic bands, strong correlations, and magnetic order. This interplay may result in exotic quasiparticles that describe the coupled electronic and spin excitations on the frustrated kagome lattice. Here, we observe novel elementary magnetic excitations within the ferromagnetic Mn kagome layers in TbMnSn using inelastic neutron scattering. We observe sharp, collective acoustic magnons and identify flat-band magnons that are localized to a hexagonal plaquette due to the special geometry of the kagome layer. Surprisingly, we observe another type of elementary magnetic excitation; a chiral magnetic quasiparticle that is also localized on a hexagonal plaquette. The short lifetime of localized flat-band and chiral quasiparticles suggest that they are hybrid excitations that decay into electronic states.
磁性 Kagome 金属是一个很有前景的平台,可用于开发由拓扑电子能带、强关联和磁序之间的相互作用所引起的独特量子输运和光学现象。这种相互作用可能会产生奇异的准粒子,这些准粒子描述了在受挫的 Kagome 晶格上的耦合电子和自旋激发。在此,我们利用非弹性中子散射在 TbMnSn 的铁磁 Mn Kagome 层中观测到了新型的基本磁激发。我们观测到了尖锐的集体声子磁振子,并识别出由于 Kagome 层的特殊几何结构而局域在六边形格子上的平带磁振子。令人惊讶的是,我们还观测到了另一种基本磁激发;一种也局域在六边形格子上的手性磁准粒子。局域平带和手性准粒子的短寿命表明它们是会衰变成电子态的混合激发。