Solid-state cavity quantum electrodynamics is a rapidly advancing field, which explores the frontiers of light–matter coupling. Metal-based approaches are of particular interest in this field, as they carry the potential to squeeze optical modes to spaces significantly below the diffraction limit. Transition metal dichalcogenides are ideally suited as the active material in cavity quantum electrodynamics, as they interact strongly with light at the ultimate monolayer limit. Here, we implement a Tamm-plasmon-polariton structure and study the coupling to a monolayer of WSe\(_{2}\), hosting highly stable excitons. Exciton-polariton formation at room temperature is manifested in the characteristic energy–momentum dispersion relation studied in ...
Monolayer transition-metal dichalcogenide (TMD) materials have attracted a great attention because o...
Monolayers of transition-metal dicalcogenides have emerged as two-dimensional semiconductors with di...
Polaritons are compositional light-matter quasiparticles that arise as a result of strong coupling b...
Solid-state cavity quantum electrodynamics is a rapidly advancing field, which explores the frontier...
Solid state cavity quantum electrodynamics is a rapidly advancing field which explores the frontiers...
This work has been supported by the State of Bavaria. A.K. and S.H. acknowledge the partial financia...
Two-dimensional transition metal dichalcogenides exhibit strong optical transitions with significant...
Two-dimensional transition metal dichalcogenides exhibit strong optical transitions with significant...
Monolayer transition-metal dichalcogenides (TMDCs) have attracted a lot of research attention recent...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Monolayer transition-metal dichalcogenides (TMDCs) have attracted a lot of research attention recent...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Polaritons are compositional light-matter quasiparticles that arise as a result of strong coupling b...
Monolayer transition-metal dichalcogenide (TMD) materials have attracted a great attention because o...
Monolayers of transition-metal dicalcogenides have emerged as two-dimensional semiconductors with di...
Polaritons are compositional light-matter quasiparticles that arise as a result of strong coupling b...
Solid-state cavity quantum electrodynamics is a rapidly advancing field, which explores the frontier...
Solid state cavity quantum electrodynamics is a rapidly advancing field which explores the frontiers...
This work has been supported by the State of Bavaria. A.K. and S.H. acknowledge the partial financia...
Two-dimensional transition metal dichalcogenides exhibit strong optical transitions with significant...
Two-dimensional transition metal dichalcogenides exhibit strong optical transitions with significant...
Monolayer transition-metal dichalcogenides (TMDCs) have attracted a lot of research attention recent...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Monolayer transition-metal dichalcogenides (TMDCs) have attracted a lot of research attention recent...
Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related...
Polaritons are compositional light-matter quasiparticles that arise as a result of strong coupling b...
Monolayer transition-metal dichalcogenide (TMD) materials have attracted a great attention because o...
Monolayers of transition-metal dicalcogenides have emerged as two-dimensional semiconductors with di...
Polaritons are compositional light-matter quasiparticles that arise as a result of strong coupling b...