The strong coupling of an excitonic transition with an electromagnetic mode results in composite quasi-particles called exciton polaritons, which have been shown to combine the best properties of their individual components in semiconductor microcavities. However, the physics and applications of polariton flows in organic materials and at room temperature are still unexplored because of the poor photon confinement in such structures. Here, we demonstrate that polaritons formed by the hybridization of organic excitons with a Bloch surface wave are able to propagate for hundreds of microns showing remarkable third-order nonlinear interactions upon high injection density. These findings pave the way for the study of organic nonlinear light-mat...
We report on the origin of energy-shifts in organic polariton condensates. The localised nature of F...
Guiding long-range energy transport is key to enabling a diversity of photonic and optoelectronic de...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...
Polaritons are hybrid light-matter quasi-particles that have gathered a significant attention for th...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
Exciton-polaritons are quasiparticles consisting of a linear superposition of photonic and excitonic...
Bose-Einstein condensates of exciton-polaritons in inorganic semiconductor microcavities are known t...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
Amorphous molecular solids are inherently disordered, exhibiting strong exciton localization. Optica...
Exciton transport in most organic materials is based on an incoherent hopping process between neighb...
While there have been numerous reports of long-range polariton transport at room-temperature in orga...
Organic materials exhibit exceptional room temperature light emitting characteristics and enormous e...
M.W., G.A.T., and I.D.W.S. acknowledge financial support from the Engineering and Physical Sciences ...
Under the right conditions, cavity polaritons form a macroscopic condensate in the ground state. The...
We report on the origin of energy-shifts in organic polariton condensates. The localised nature of F...
Guiding long-range energy transport is key to enabling a diversity of photonic and optoelectronic de...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...
Polaritons are hybrid light-matter quasi-particles that have gathered a significant attention for th...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
Strong-coupling between excitons and confined photonic modes can lead to the formation of new quasi-...
Exciton-polaritons are quasiparticles consisting of a linear superposition of photonic and excitonic...
Bose-Einstein condensates of exciton-polaritons in inorganic semiconductor microcavities are known t...
In recent years it has become clear that the transport of excitons and charge carriers in molecular ...
Amorphous molecular solids are inherently disordered, exhibiting strong exciton localization. Optica...
Exciton transport in most organic materials is based on an incoherent hopping process between neighb...
While there have been numerous reports of long-range polariton transport at room-temperature in orga...
Organic materials exhibit exceptional room temperature light emitting characteristics and enormous e...
M.W., G.A.T., and I.D.W.S. acknowledge financial support from the Engineering and Physical Sciences ...
Under the right conditions, cavity polaritons form a macroscopic condensate in the ground state. The...
We report on the origin of energy-shifts in organic polariton condensates. The localised nature of F...
Guiding long-range energy transport is key to enabling a diversity of photonic and optoelectronic de...
Semiconductor microcavities represent a rich playground for the investigation and exploitation of fu...