Dichotomy of metallic electron density and charge density wave in 1T-TiSe2

被引:1
|
作者
Jeong, Dongjoon [1 ,2 ]
Kim, Jimin [1 ]
Jin, Kyung-Hwan [1 ]
Kim, Jaeyoung [1 ]
Yeom, Han Woong [1 ,2 ]
机构
[1] Inst Basic Sci IBS, Ctr Artificial Low Dimens Elect Syst, Pohang 37673, South Korea
[2] Pohang Univ Sci & Technol POSTECH, Dept Phys, Pohang 37673, South Korea
关键词
ALPHA-URANIUM; STATE; RESISTIVITY;
D O I
10.1103/PhysRevB.109.125117
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
1T -TiSe2 has been intensely investigated for its intriguing charge density wave (CDW) phase, which competes with emerging superconductivity. However, the mechanism of the CDW transition has been elusive with the possibility of strong excitonic interaction. Here, we investigate, using angle-resolved photoelectron spectroscopy and density functional theory calculations, the evolution of the CDW band structure upon electron doping into the surface layer by alkali metal adsorbates. Alkali metal adsorption induces substantial electron donation into the Ti 3d conduction band with strong band renormalization while the Se 4p valance band is contrastingly intact. The density functional theory calculations reveal that only the spectator-type Ti 3d band is selectively doped with the CDW band gap largely intact. This result indicates that the CDW formation is not critically related to the metallic electron density and, in turn, to the excitonic coupling due to its unique multiband configuration.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Comparison of tunneling spectra for normal and charge density wave states in 1T-TiSe2
    Nomura, Atsushi
    Kurosawa, Tohru
    Oda, Migaku
    Demura, Satoshi
    Kuwahara, Shogo
    Kobayashi, Sora
    Sakata, Hideaki
    SURFACE SCIENCE, 2024, 741
  • [22] Charge density wave phase suppression in 1T-TiSe2 through Sn intercalation
    Mukhtar Lawan Adam
    Hongen Zhu
    Zhanfeng Liu
    Shengtao Cui
    Pengjun Zhang
    Yi Liu
    Guobin Zhang
    Xiaojun Wu
    Zhe Sun
    Li Song
    Nano Research, 2022, 15 : 2643 - 2649
  • [23] Doping stability and charge-density-wave transition of strained 1T-TiSe2
    Fu, Zhen-Guo
    Wang, Jian-Hao
    Yang, Yu
    Yang, Wei
    Liu, Li-Li
    Hu, Zi-Yu
    Zhang, Ping
    EPL, 2017, 120 (01)
  • [24] Electronically Seamless Domain Wall of Chiral Charge Density Wave in 1T-TiSe2
    Kim, Hyeonjung
    Jin, Kyung-Hwan
    Yeom, Han Woong
    NANO LETTERS, 2024, 24 (45) : 14323 - 14328
  • [25] Charge density wave phase suppression in 1T-TiSe2 through Sn intercalation
    Adam, Mukhtar Lawan
    Zhu, Hongen
    Liu, Zhanfeng
    Cui, Shengtao
    Zhang, Pengjun
    Liu, Yi
    Zhang, Guobin
    Wu, Xiaojun
    Sun, Zhe
    Song, Li
    NANO RESEARCH, 2022, 15 (03) : 2643 - 2649
  • [26] Violation of Kohler's rule at the charge density wave transition in 1T-TiSe2
    Li, Zhaoguo
    Zhang, Jicheng
    JOURNAL OF APPLIED PHYSICS, 2022, 132 (16)
  • [27] Layer- and substrate-dependent charge density wave criticality in 1T-TiSe2
    Kolekar, Sadhu
    Bonilla, Manuel
    Ma, Yujing
    Diaz, Horacio Coy
    Batzill, Matthias
    2D MATERIALS, 2018, 5 (01):
  • [28] Emergence of charge density wave domain walls above the superconducting dome in 1T-TiSe2
    Joe, Y. I.
    Chen, X. M.
    Ghaemi, P.
    Finkelstein, K. D.
    de la Pena, G. A.
    Gan, Y.
    Lee, J. C. T.
    Yuan, S.
    Geck, J.
    MacDougall, G. J.
    Chiang, T. C.
    Cooper, S. L.
    Fradkin, E.
    Abbamonte, P.
    NATURE PHYSICS, 2014, 10 (06) : 421 - 425
  • [29] Short-range phase coherence and origin of the 1T-TiSe2 charge density wave
    Hildebrand, B.
    Jaouen, T.
    Didiot, C.
    Razzoli, E.
    Monney, G.
    Mottas, M. -L.
    Ubaldini, A.
    Berger, H.
    Barreteau, C.
    Beck, H.
    Bowler, D. R.
    Aebi, P.
    PHYSICAL REVIEW B, 2016, 93 (12)
  • [30] Charge-Density-Wave Phase of 1T-TiSe2: The Influence of Conduction Band Population
    May, Matthias M.
    Brabetz, Christine
    Janowitz, Christoph
    Manzke, Recardo
    PHYSICAL REVIEW LETTERS, 2011, 107 (17)