凝聚态物理
电荷(物理)
费米能级
态密度
电荷密度
谱线
电荷密度波
带隙
物理
材料科学
化学
电子
量子力学
超导电性
作者
Siyu Cheng,Zheng Ren,Hong Li,Ji Seop Oh,Hengxin Tan,Ganesh Pokharel,Jonathan M. DeStefano,Elliott Rosenberg,Yucheng Guo,Yichen Zhang,Ziqin Yue,Yongbin Lee,Sergey Gorovikov,Marta Zonno,Makoto Hashimoto,Dong-Hui Lu,Liqin Ke,Federico Mazzola,Junichiro Kono,R. J. Birgeneau
标识
DOI:10.1038/s41535-024-00623-9
摘要
Abstract Charge density waves (CDWs) in kagome metals have been tied to many exotic phenomena. Here, using spectroscopic-imaging scanning tunneling microscopy and angle-resolved photoemission spectroscopy, we study the charge order in kagome metal ScV 6 Sn 6 . The similarity of electronic band structures of ScV 6 Sn 6 and TbV 6 Sn 6 (where charge ordering is absent) suggests that charge ordering in ScV 6 Sn 6 is unlikely to be primarily driven by Fermi surface nesting of the Van Hove singularities. In contrast to the CDW state of cousin kagome metals, we find no evidence supporting rotation symmetry breaking. Differential conductance d I /d V spectra show a partial gap Δ 1 CO ≈ 20 meV at the Fermi level. Interestingly, d I /d V maps reveal that charge modulations exhibit an abrupt phase shift as a function of energy at energy much higher than Δ 1 CO , which we attribute to another spectral gap. Our experiments reveal a distinctive nature of the charge order in ScV 6 Sn 6 with fundamental differences compared to other kagome metals.
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