TY - JOUR
T1 - Unusual temperature dependence of the band structure associated with local atomic distortion in monolayer 1T′-WTe2
AU - Ando, Ryuichi
AU - Sugawara, Katsuaki
AU - Kawakami, Tappei
AU - Yanagizawa, Koki
AU - Yaegashi, Ken
AU - Takahashi, Takashi
AU - Sato, Takafumi
N1 - Publisher Copyright:
© 2025 American Physical Society.
PY - 2025/1
Y1 - 2025/1
N2 - The ground state of monolayer 1T′-WTe2 has been a target of intensive debate on whether or not it is a two-dimensional topological insulator (2D TI) associated with exciton formation. We investigated the band structure of an epitaxial monolayer 1T′-WTe2 film grown on graphene/SiC(0001) in a wide temperature range of T=40-400K by angle-resolved photoemission spectroscopy (ARPES). We observed an electron band above the Fermi level (EF) slightly away from the Γ point, together with four hole bands below EF just at the Γ point. This signifies an indirect band gap exceeding 0.1 eV in support of the 2D-TI phase with the inverted band structure. We uncovered an unexpectedly large downward shift of valence bands upon cooling, accompanied with an upward shift of the conduction band. Comparison of the ARPES-derived band structure with first-principles band calculations suggests that the observed band shift is ascribed to the systematic local atomic distortion of tungsten atoms, which should be incorporated into the interpretation of unusual transport properties of 1T′-WTe2.
AB - The ground state of monolayer 1T′-WTe2 has been a target of intensive debate on whether or not it is a two-dimensional topological insulator (2D TI) associated with exciton formation. We investigated the band structure of an epitaxial monolayer 1T′-WTe2 film grown on graphene/SiC(0001) in a wide temperature range of T=40-400K by angle-resolved photoemission spectroscopy (ARPES). We observed an electron band above the Fermi level (EF) slightly away from the Γ point, together with four hole bands below EF just at the Γ point. This signifies an indirect band gap exceeding 0.1 eV in support of the 2D-TI phase with the inverted band structure. We uncovered an unexpectedly large downward shift of valence bands upon cooling, accompanied with an upward shift of the conduction band. Comparison of the ARPES-derived band structure with first-principles band calculations suggests that the observed band shift is ascribed to the systematic local atomic distortion of tungsten atoms, which should be incorporated into the interpretation of unusual transport properties of 1T′-WTe2.
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U2 - 10.1103/PhysRevMaterials.9.L011001
DO - 10.1103/PhysRevMaterials.9.L011001
M3 - Article
AN - SCOPUS:85216194536
SN - 2475-9953
VL - 9
JO - Physical Review Materials
JF - Physical Review Materials
IS - 1
M1 - L011001
ER -