Transition metal dichalcogenides (TMDs) have garnered significant research interest due to the variation in band-edge locations within the hexagonal Brillouin zone between single-layer and bulk configurations. In monolayers, the conduction band minima are centered at the K-points, whereas in multilayers, they shift to the Q-points, midway between the Γ and K points. In this study, we conduct magnetotransport experiments to measure the occupation in the Q and K valleys in fourlayer molybdenum disulfide (MoS2). We demonstrate electrostatic tunability of the conduction band edge by combining our experimental results with a hybrid k⋅p tight-binding model that accounts for interlayer screening effects in a self-consistent manner. Furthermore, we extend our model to bilayer and trilayer MoS2, reconciling prior experimental results and quantifying the tunable range of band edges in atomically thin TMDs.
@article{arxiv.2503.03371,
title = {Gate-tunable band-edge in few-layer MoS$_2$},
author = {Michele Masseroni and Isaac Soltero and James G. Hugh and Igor Rozhansky and Xue Li and Alexander Schmidhuber and Markus Niese and Takashi Taniguchi and Kenji Watanabe and Vladimir Fal'ko and Thomas Ihn and Klaus Ensslin},
journal= {arXiv preprint arXiv:2503.03371},
year = {2025}
}