DOE OSTI · 2352192
Multiband Fermi surface in $1T–$$\mathrm{VSe_2}$ and its implication for the charge density wave phase
Abstract
Angle-resolved photoemission spectroscopy experiments reveal a surprisingly richer surface electronic structure in $1T–$$\mathrm{VSe_2}$ than previously predicted or probed. Earlier claims supporting a charge density wave phase in this material are reexamined in terms of these findings and are found to be untenable. Here, the Fermi surface is found to be gapless, while band warping effects, currently attributed to three-dimensional lattice distortion, result from the simultaneous dispersion of the closely lying multiple bands. Based on these findings, a charge density wave scenario in $1T–$$\mathrm{VSe_2}$ is unlikely. On the other side, the presence of multiple states crossing the Fermi level should constitute relevant constraints for any viable microscopic model of the structural phase transition of $\mathrm{VSe_2}$.
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Yilmaz, Turgut, Vescovo, Elio, Sinkovic, Boris. 2023-04-06. Multiband Fermi surface in $1T–$$\mathrm{VSe_2}$ and its implication for the charge density wave phase. https://doi.org/10.1103/physrevb.107.165109
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