论文标题

在Kagome超导体CSTI $ _3 $ bi $ _5 $中观察平面频段,狄拉克节点线和拓扑表面状态

Observation of Flat Band, Dirac Nodal Lines and Topological Surface States in Kagome Superconductor CsTi$_3$Bi$_5$

论文作者

Yang, Jiangang, Xie, Yuyang, Zhao, Zhen, Yi, Xinwei, Miao, Taimin, Luo, Hailan, Chen, Hao, Liang, Bo, Zhu, Wenpei, Ye, Yuhan, You, Jing-Yang, Gu, Bo, Zhang, Shenjin, Zhang, Fengfeng, Yang, Feng, Wang, Zhimin, Peng, Qinjun, Mao, Hanqing, Liu, Guodong, Xu, Zuyan, Chen, Hui, Yang, Haitao, Su, Gang, Gao, Hongjun, Zhao, Lin, Zhou, X. J.

论文摘要

3D过渡金属的Kagome晶格主持了平坦的乐队,Dirac Fermions和马鞍点。它提供了一个多功能平台,可在这种晶格中涉及强相关性,旋转​​轨道耦合或磁性时,可实现拓扑超导性,异常大厅效应,非常规密度波顺序和量子自旋液体。在这里,使用基于激光的角度分辨光发射光谱与密度功能理论计算结合使用,我们研究了新发现的新发现的Kagome超导体CSTI $ _3 $ _3 $ _3 $ _5 $的电子结构,这是与AV $ _3 $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $ _5 $ and a = k,rb或cagys and comenters and compss and a av $ _5钛的Kagome网络。我们直接观察到了一个引人注目的平坦带,该谱带源自kagome晶格内Bloch波函数的局部破坏性干扰。我们还确定了Brillouin区域中心周围的II型Dirac节点循环,III型Dirac节点循环周围的区域角和III III型Dirac节点线沿K $ _Z $方向。此外,还观察到Z2非平地拓扑表面状态在布里渊区中心周围,由于强旋轨道耦合而从带反转形成。一个kagome超导体中的这种多型非平凡带结构的同时存在不仅提供了在Kagome晶格中研究相关物理学的好机会,而且还使CSTI $ _3 $ _3 $ _3 $ _5 $是一种理想的系统,可以通过在化学掺杂或压力上操纵其化学物质来实现Noval量子现象。

A kagome lattice of 3d transition metals hosts flat bands, Dirac fermions and saddle points. It provides a versatile platform for achieving topological superconductivity, anomalous Hall effect, unconventional density wave order and quantum spin liquid when the strong correlation, spin-orbit coupling or magnetic order are involved in such a lattice. Here, using laser-based angle-resolved photoemission spectroscopy in combination with density functional theory calculations, we investigate the electronic structure of the newly discovered kagome superconductor CsTi$_3$Bi$_5$, which is isostructural to the AV$_3$Sb$_5$ (A=K, Rb or Cs) kagome superconductors and possesses a perfect two-dimensional kagome network of Titanium. We directly observed a strikingly flat band derived from the local destructive interferences of Bloch wave functions within the kagome lattices. We also identify the type-II Dirac nodal loops around the Brillouin zone center, the type-III Dirac nodal loops around the zone corners and type-III Dirac nodal lines along the k$_z$ direction. In addition, around the Brillouin zone center, Z2 nontrivial topological surface states are also observed which is formed from the band inversion due to strong spin orbital coupling. The simultaneous existence of such multi-sets of nontrivial band structures in one kagome superconductor not only provides good opportunities to study related physics in the kagome lattice but also makes CsTi$_3$Bi$_5$ an ideal system to realize noval quantum phenomena by manipulating its chemical potential with chemical doping or pressure.

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