论文标题

平面乐队,非平凡的乐队拓扑和分层kagome-lattice rbti $ _3 $ bi $ _5 $

Flat bands, non-trivial band topology and electronic nematicity in layered kagome-lattice RbTi$_3$Bi$_5$

论文作者

Jiang, Zhicheng, Liu, Zhengtai, Ma, Haiyang, Xia, Wei, Liu, Zhonghao, Liu, Jishan, Cho, Soohyun, Yang, Yichen, Ding, Jianyang, Liu, Jiayu, Huang, Zhe, Qiao, Yuxi, Shen, Jiajia, Jing, Wenchuan, Liu, Xiangqi, Liu, Jianpeng, Guo, Yanfeng, Shen, Dawei

论文摘要

带有3 $ D $过渡金属的分层Kagome晶体材料为研究几何挫败感,乐队拓扑和其他新颖有序状态提供了肥沃的操场。事实证明,已经具有代表性的材料AV $ _3 $ SB $ _5 $(A = K,RB,CS)具有各种非常规的阶段,例如超导性,非主导$ \ MATHBB {z} _2 _2 _2 _2 _2 $频段拓扑,频段拓扑,以及与多重互动的电荷密度(CD)相互交织。但是,这些新颖状态及其机制之间的相互作用仍然难以捉摸。最近,发现了基于同生钛的单晶ATI $ _3 $ _3 $ $ $ _5 $(a = k,rb,cs),它们表现出了相似的多种外来状态,但在没有伴随的相互交织的CDW的情况下,它一直在提供理想的机会,可以使这些理想的机会在Kagagome-Lattice-Lattice-Lattice中没有这些复杂的小说状态。在这里,我们结合了高分辨率角度分辨的光发射光谱和第一原理计算,以系统地研究RBTI $ _3 $ _3 $ bi $ $ _5 $的低洼电子结构。我们首次在实验上证明了扁平带和多个非平凡拓扑状态的共存,包括II型Dirac节点线和非平凡的$ \ Mathbb {Z} _2 _2 $拓扑表面状态。此外,我们的发现还提供了RBTI $ _3 $ bi $ _5 $中的旋转对称性破裂的暗示,这表明了电子结构的方向性,并且可能在这种新的Kagome化合物中出现纯电子nematicities的可能性,这可能会在Corelecomecome Kagome Metals中提供电子nematic nematic nematic nematic nematic nemights。

Layered kagome-lattice materials with 3$d$ transition metals provide a fertile playground for studies on geometry frustration, band topology and other novel ordered states. A representative class of materials AV$_3$Sb$_5$ (A=K, Rb, Cs) have been proved to possess various unconventional phases such as superconductivity, non-trivial $\mathbb{Z}_2$ band topology, and electronic nematicity, which are intertwined with multiple interlaced charge density waves (CDW). However, the interplay among these novel states and their mechanisms are still elusive. Recently, the discovery of isostructural titanium-based single-crystals ATi$_3$Bi$_5$ (A=K, Rb, Cs), which demonstrate similar multiple exotic states but in the absence of the concomitant intertwined CDW, has been offering an ideal opportunity to disentangle these complex novel states in kagome-lattice. Here, we combine the high-resolution angle-resolved photoemission spectroscopy and first-principles calculations to systematically investigate the low-lying electronic structure of RbTi$_3$Bi$_5$. For the first time, we experimentally demonstrate the coexistence of flat bands and multiple non-trivial topological states, including type-II Dirac nodal lines and non-trivial $\mathbb{Z}_2$ topological surface states therein. Furthermore, our findings as well provide the hint of rotation symmetry breaking in RbTi$_3$Bi$_5$, suggesting the directionality of the electronic structure and possibility of emerging pure electronic nematicity in this new family of kagome compounds, which may provide important insights into the electronic nematic phase in correlated kagome metals.

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