Transition metal dichalcogenides represent an ideal testbed to study excitonic effects, spin-related phenomena and fundamental light-matter coupling in nanoscopic condensed matter systems. In particular, the valley degree of freedom, which is unique to such direct band gap monolayers with broken inversion symmetry, adds fundamental interest in these materials. Here, we implement a Tamm-plasmon structure with an embedded MoSe2 monolayer and study the formation of polaritonic quasi-particles. Strong coupling conditions between the Tamm-mode and the trion resonance of MoSe2 are established, yielding bright luminescence from the polaritonic ground state under non-resonant optical excitation. We demonstrate, that tailoring the electrodynamic env...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Atomically thin crystals of transition-metal dichalcogenides are ideally suited to study the interpl...
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...
This work has been supported by the State of Bavaria and the ERC (unlimit-2D) as well as the DFG via...
The locking of the electron spin to the valley degree of freedom in transition metal dichalcogenide ...
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...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
International audienceTwo-dimensional transition metal dichalcogenides (TMDs) provide a unique possi...
Solid-state cavity quantum electrodynamics is a rapidly advancing field, which explores the frontier...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Atomically thin crystals of transition-metal dichalcogenides are ideally suited to study the interpl...
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...
This work has been supported by the State of Bavaria and the ERC (unlimit-2D) as well as the DFG via...
The locking of the electron spin to the valley degree of freedom in transition metal dichalcogenide ...
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...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
International audienceTwo-dimensional transition metal dichalcogenides (TMDs) provide a unique possi...
Solid-state cavity quantum electrodynamics is a rapidly advancing field, which explores the frontier...
Two-dimensional transition metal dichalcogenides (TMDs) provide a unique possibility to generate and...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Spin–orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its m...
Atomically thin crystals of transition-metal dichalcogenides are ideally suited to study the interpl...