Large effective mass and interaction-enhanced Zeeman splitting of -valley electrons in MoSe
arXiv:1804.10104 · doi:10.1103/PhysRevB.97.201407
Abstract
We study the magnetotransport of high-mobility electrons in monolayer and bilayer MoSe, which show Shubnikov-de Haas (SdH) oscillations and quantum Hall states in high magnetic fields. An electron effective mass of 0.8 is extracted from the SdH oscillations' temperature dependence; is the bare electron mass. At a fixed electron density the longitudinal resistance shows minima at filling factors (FFs) that are either predominantly odd, or predominantly even, with a parity that changes as the density is tuned. The SdH oscillations are insensitive to an in-plane magnetic field, consistent with an out-of-plane spin orientation of electrons at the -point. We attribute the FFs parity transitions to an interaction enhancement of the Zeeman energy as the density is reduced, resulting in an increased Zeeman-to-cyclotron energy ratio.
5 pages, 5 figures; includes supplemental material