paper

Extremely high excitonic -factors in 2D crystals by alloy-induced admixing of band states

arXiv:2503.23071 · doi:10.1103/lx4n-7bb7

Abstract

Monolayers (MLs) of semiconducting transition metal dichalcogenides (\mbox{S-TMDs}) emit light very efficiently and display rich spin-valley physics, with gyromagnetic (-) factors of about -4. Here, we investigate how these properties can be tailored by alloying. Magneto-optical spectroscopy is used to reveal the peculiar properties of excitonic complexes in MoWSe MLs with different Mo and W concentrations. We show that the alloys feature extremely high -factors for neutral excitons, that change gradually with the composition up to reaching values of the order of -10 for . First-principles calculations corroborate the experimental findings and provide evidence that alloying in S-TMDs results in a non-trivial band structure engineering, being at the origin of the high -factors. The theoretical framework also suggests a higher strain sensitivity of the alloys, making them promising candidates for tailor-made optoelectronic devices.

9 pages, 5 figures, SM

References in corpus (26)