论文标题

kagome fege中的磁性和电荷密度波顺序交织在一起

Intertwined magnetism and charge density wave order in kagome FeGe

论文作者

Teng, Xiaokun, Oh, Ji Seop, Tan, Hengxin, Chen, Lebing, Huang, Jianwei, Gao, Bin, Yin, Jia-Xin, Chu, Jiun-Haw, Hashimoto, Makoto, Lu, Donghui, Jozwiak, Chris, Bostwick, Aaron, Rotenberg, Eli, Granroth, Garrett E., Yan, Binghai, Birgeneau, Robert J., Dai, Pengcheng, Yi, Ming

论文摘要

电子相关性通常会导致量子材料中的紧急订单。 Kagome晶格材料正在成为一个令人兴奋的平台,用于在存在电子相关性的情况下实现量子拓扑。该建议源于与其晶格几何相关的电子结构的关键特征:由电子波函数的破坏性干扰,拓扑狄拉克交叉和一对范霍夫奇异性(VHSS)引起的平坦条带。在Kagome晶格材料中发现了许多相关的电子相,包括磁性,电荷密度波(CDW),nematicition和超导性。这些材料可以大部分分为两种类型:那些含有磁性的材料和那些容纳CDW顺序的材料。最近,在磁性kagome fege中发现了一个CDW顺序,为理解CDW和磁性之间的相互作用提供了一个新的平台。在这里,利用角度分辨光发射光谱,我们观察到了Kagome晶格的所有三种电子特征:平面频带,狄拉克交叉和VHSS。从对VHSS向费米水平的温度依赖性变化以及通过第一原则计算进行指导的观察,我们确定了在费米水平(EF)附近的VHSS的存在,以通过潜在的磁性交换的发展驱动。此外,我们显示了CDW顺序的频谱证据,作为在近FEF VHS频段上打开的差距,以及从VHS带上的扭结中的电子音波耦合的证据,以及无弹性中子散射观察到的声子硬化。我们的观察表明,磁相互作用驱动的带子修饰导致CDW顺序的形成,表明在这种中等相关的Kagome金属中,新兴磁力和VHS电荷顺序之间存在相互缠结的连接。

Electron correlations often lead to emergent orders in quantum materials. Kagome lattice materials are emerging as an exciting platform for realizing quantum topology in the presence of electron correlations. This proposal stems from the key signatures of electronic structures associated with its lattice geometry: flat band induced by destructive interference of the electronic wavefunctions, topological Dirac crossing, and a pair of van Hove singularities (vHSs). A plethora of correlated electronic phases have been discovered amongst kagome lattice materials, including magnetism, charge density wave (CDW), nematicity, and superconductivity. These materials can be largely organized into two types: those that host magnetism and those that host CDW order. Recently, a CDW order has been discovered in the magnetic kagome FeGe, providing a new platform for understanding the interplay between CDW and magnetism. Here, utilizing angle-resolved photoemission spectroscopy, we observe all three types of electronic signatures of the kagome lattice: flat bands, Dirac crossings, and vHSs. From both the observation of a temperature-dependent shift of the vHSs towards the Fermi level as well as guidance via first-principle calculations, we identify the presence of the vHSs near the Fermi level (EF) to be driven by the development of underlying magnetic exchange splitting. Furthermore, we show spectral evidence for the CDW order as gaps that open on the near-EF vHS bands, as well as evidence of electron-phonon coupling from a kink on the vHS band together with phonon hardening observed by inelastic neutron scattering. Our observation points to the magnetic interaction-driven band modification resulting in the formation of the CDW order, indicating an intertwined connection between the emergent magnetism and vHS charge order in this moderately-correlated kagome metal.

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