Sep 20 – 25, 2026
University of Graz
Europe/Vienna timezone

Dynamical Control of Coulomb Interactions and Hubbard Bands in Monolayer 1T-TaS2

Sep 25, 2026, 12:00 PM
15m
HS 15.05 (University of Graz)

HS 15.05

University of Graz

15 - RESOWI E, ground floor
3) Contributed talk M15 - Light-wave driven dynamics in quantum materials Mini-Colloquium

Speaker

Niklas Notter (Institute of Theoretical and Computational Physics, Graz University of Technology)

Description

Monolayer 1T-TaS2 hosts a star-of-David charge-density wave (CDW) that stabilizes a low-temperature Mott-insulating state. Recent time-resolved spectroscopies indicate a coupling between the CDW amplitude mode and the electronic correlation strength, yet the role of the screened Coulomb interaction remains unclear. Using the constrained random-phase approximation, we show that the CDW amplitude modifies the bare and screened on-site interactions, leading to sizable variations in the effective Hubbard U. Our combined density-functional and dynamical mean-field theory calculations reveal that the Hubbard bands shift in concert with the CDW amplitude and that a reduced distortion drives a transition from a Mott insulator to a correlated metal. These results demonstrate a direct link between lattice distortions and Coulomb interactions in transition-metal dichalcogenides, providing a microscopic mechanism for light-induced control of correlated phases in two-dimensional quantum materials.

Authors

Anna Galler Markus Aichhorn (Institute of Theoretical and Computational Physics, Graz University of Technology, Graz, Austria) Niklas Notter (Institute of Theoretical and Computational Physics, Graz University of Technology)

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