In the strong light-matter coupling regime realized e.g. by integrating semiconductors into optical microcavities, polaritons as new hybrid light-matter quasi-particles are formed. The corresponding change in the dispersion relation has a large impact on optics, dynamics and transport behaviour of semiconductors. In this work, we investigate the strong-coupling regime in hBN-encapsulated MoSe$_2$ monolayers focusing on exciton-polariton diffusion. Applying a microscopic approach based on the exciton density matrix formalism combined with the Hopfield approach, we predict a drastic increase of the diffusion coefficients by two to three orders of magnitude in the strong coupling regime. We explain this behaviour by the much larger polariton g...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
We describe exciton-polariton modes formed by the interaction between excitons in a 2D layer of a t...
Optical and transport properties of doped monolayer semiconductors are dominated by trions, which ar...
In the strong light-matter coupling regime realized, e.g., by integrating semiconductors into optica...
Integrating 2D materials into high-quality optical microcavities opens the door to fascinating many-...
Integrating 2D materials into high-quality optical microcavities opens the door to fascinating many-...
Atomically thin semiconductors such as transition metal dichalcogenide (TMD) monolayers exhibit a ve...
We experimentally demonstrate time-resolved exciton propagation in a monolayer semiconductor at cryo...
Atomically thin semiconductors provide an excellent platform to study intriguing many-particle physi...
Dispersion engineering is a powerful and versatile tool that can vary the speed of light signals and...
Tightly bound excitons in monolayer semiconductors represent a versatile platform to study two-dimen...
We study a doped transition metal dichalcogenide (TMDC) monolayer in an optical microcavity. Using t...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Atomically thin crystals of transition metal dichalcogenides (TMDs) host excitons with strong bindin...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
We describe exciton-polariton modes formed by the interaction between excitons in a 2D layer of a t...
Optical and transport properties of doped monolayer semiconductors are dominated by trions, which ar...
In the strong light-matter coupling regime realized, e.g., by integrating semiconductors into optica...
Integrating 2D materials into high-quality optical microcavities opens the door to fascinating many-...
Integrating 2D materials into high-quality optical microcavities opens the door to fascinating many-...
Atomically thin semiconductors such as transition metal dichalcogenide (TMD) monolayers exhibit a ve...
We experimentally demonstrate time-resolved exciton propagation in a monolayer semiconductor at cryo...
Atomically thin semiconductors provide an excellent platform to study intriguing many-particle physi...
Dispersion engineering is a powerful and versatile tool that can vary the speed of light signals and...
Tightly bound excitons in monolayer semiconductors represent a versatile platform to study two-dimen...
We study a doped transition metal dichalcogenide (TMDC) monolayer in an optical microcavity. Using t...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
This is the final version. Available on open access from Nature Research via the DOI in this recordD...
Atomically thin crystals of transition metal dichalcogenides (TMDs) host excitons with strong bindin...
Strong interaction between photons and excitons in semiconductors results in the formation of half-l...
We describe exciton-polariton modes formed by the interaction between excitons in a 2D layer of a t...
Optical and transport properties of doped monolayer semiconductors are dominated by trions, which ar...