Titel
Exciton g-factors in monolayer and bilayer WSe2 from experiment and theory
Autor*in
Jonathan Förste
Munich Quantum Center, and Center for NanoScience (CeNS), Fakultät für Physik, Ludwig-Maximilians-Universität München
Autor*in
Nikita V. Tepliakov
Information Optical Technologies Center, ITMO University
... show all
Abstract
The optical properties of monolayer and bilayer transition metal dichalcogenide semiconductors are governed by excitons in different spin and valley configurations, providing versatile aspects for van der Waals heterostructures and devices. Here, we present experimental and theoretical studies of exciton energy splittings in external magnetic field in neutral and charged WSe2 monolayer and bilayer crystals embedded in a field effect device for active doping control. We develop theoretical methods to calculate the exciton g-factors from first principles for all possible spin-valley configurations of excitons in monolayer and bilayer WSe2 including valley-indirect excitons. Our theoretical and experimental findings shed light on some of the characteristic photoluminescence peaks observed for monolayer and bilayer WSe2. In more general terms, the theoretical aspects of our work provide additional means for the characterization of single and few-layer transition metal dichalcogenides, as well as their heterostructures, in the presence of external magnetic fields.
Stichwort
Condensed-matter physicsMagneto-opticsTwo-dimensional materials
Objekt-Typ
Sprache
Englisch [eng]
Persistent identifier
https://phaidra.univie.ac.at/o:1241314
Erschienen in
Titel
Nature Communications
Band
11
ISSN
2041-1723
Erscheinungsdatum
2020
Verlag
Springer Science and Business Media LLC
Projektnummer
772195 – European Union (all programmes)
Projektnummer
M 2198-N30754388 – Austrian Science Fund (FWF)
Projektnummer
754388 – European Union (all programmes)
Erscheinungsdatum
2020
Zugänglichkeit
Rechteangabe
© The Author(s) 2020

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