Electronic Instability of Kagome Metal CsV3Sb5 in the 2×2×2 Charge Density Wave State

被引:0
|
作者
朱红恩 [1 ]
李彤瑞 [1 ]
喻芳航 [2 ]
李昱良 [1 ]
王盛 [1 ]
吴云波 [1 ]
刘站锋 [1 ]
尚政明 [1 ]
崔胜涛 [1 ]
刘毅 [1 ]
张国斌 [1 ]
张李东 [1 ]
王震宇 [2 ,3 ]
吴涛 [2 ,4 ,3 ]
应剑俊 [2 ]
陈仙辉 [2 ,5 ,4 ,3 ]
孙喆 [1 ,2 ,4 ]
机构
[1] National Synchrotron Radiation Laboratory,University of Science and Technology of China
[2] Department of Physics,CAS Key Laboratory of Strongly-coupled Quantum Matter Physics,University of Science and Technology of China
[3] CAS Center for Excellence in Superconducting Electronics (CENSE)
[4] Collaborative Innovation Center of Advanced Microstructures
[5] CAS Center for Excellence in Quantum Information and Quantum Physics
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
Recently discovered kagome metals AV3Sb5(A = K,Rb,and Cs) provide an ideal platform to study the correlation among nontrivial band topology,unconventional charge density wave(CDW),and superconductivity.The evolution of electronic structures associated with the change of lattice modulations is crucial for understanding of the CDW mechanism,with the combination of angle-resolved photoemission spectroscopy(ARPES)measurements and density functional theory calculations,we investigate how band dispersions change with the increase of lattice distortions.In particular,we focus on the electronic states around ■ point,where the van Hove singularities are expected to play crucial roles in the CDW transition.Previous ARPES studies reported a spectral weight splitting of the van Hove singularity around ■ point,which is associated with the 3D lattice modulations.Our studies reveal that this “splitting” can be connected to the two van Hove singularities at kz= 0 and kz = π/c in the normal states.When the electronic system enters into the CDW state,both van Hove singularities move down.Such novel properties are important for understanding of the CDW transition.
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页码:67 / 72
页数:6
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