Refractive Index Modulation in Monolayer Molybdenum Diselenide.
basic_science · Level V
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- Record sourced from PubMed, PMID 34468150.
- Also identified by DOI 10.1021/acs.nanolett.1c02199.
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Abstract
Two-dimensional transition metal dichalcogenides are promising candidates for ultrathin light modulators due to their highly tunable excitonic resonances at visible and near-infrared wavelengths. At cryogenic temperatures, large excitonic reflectivity in monolayer molybdenum diselenide (MoSe<sub>2</sub>) has been shown, but the permittivity and index modulation have not been studied. Here, we demonstrate large gate-tunability of complex refractive index in monolayer MoSe<sub>2</sub> by Fermi level modulation and study the doping dependence of the A and B excitonic resonances for temperatures between 4 and 150 K. By tuning the charge density, we observe both temperature- and carrier-dependent epsilon-near-zero response in the permittivity and transition from metallic to dielectric near the A exciton energy. We attribute the dynamic control of the refractive index to the interplay between radiative and non-radiative decay channels that are tuned upon gating. Our results suggest the potential of monolayer MoSe<sub>2</sub> as an active material for emerging photonics applications.
Medical subject headings
- Molybdenum
- Transition Elements