We create exciton-polaritons in a zero-dimensional (0D) microcavity filled with organic ladder-type conjugated polymer in the strong light–matter interaction regime. Photonic confinement at wavelength scale is realized in the longitudinal direction by two dielectric Bragg mirrors and laterally by a submicron Gaussian-shaped defect. The cavity is separated into two parts, allowing nanometer position control and enabling tuning of the exciton and photon fractions of the polariton wave function. Polariton condensation is achieved with nonresonant picosecond optical excitation under ambient conditions and evidenced by a threshold behavior with a nonlinear increase in the emission intensity, line narrowing, and a blue shift in the emission peak....
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
Microcavity-polaritons are quasi-particles formed when light and matter excitations couple strongly ...
We create exciton-polaritons in a zero-dimensional (0D) microcavity filled with organic ladder-type ...
We demonstrate strong light–matter interaction at ambient conditions between a ladder-type conjugate...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidate...
The recent progress in nanotechnology1,2 and single-molecule spectroscopy3,4,5 paves the way for eme...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidates...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidates...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Organic molecular materials have unique optoelectronic properties, which make them especially well s...
AbstractWe review the recent developments of the polariton physics in microcavities featuring the ex...
Under the right conditions, cavity polaritons form a macroscopic condensate in the ground state. The...
Strong light-matter coupling of a photon mode to tightly bound Frenkel excitons in organic materials...
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
Microcavity-polaritons are quasi-particles formed when light and matter excitations couple strongly ...
We create exciton-polaritons in a zero-dimensional (0D) microcavity filled with organic ladder-type ...
We demonstrate strong light–matter interaction at ambient conditions between a ladder-type conjugate...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidate...
The recent progress in nanotechnology1,2 and single-molecule spectroscopy3,4,5 paves the way for eme...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidates...
The strong nonlinearities of exciton-polariton condensates in lattices make them suitable candidates...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Organic molecular materials have unique optoelectronic properties, which make them especially well s...
AbstractWe review the recent developments of the polariton physics in microcavities featuring the ex...
Under the right conditions, cavity polaritons form a macroscopic condensate in the ground state. The...
Strong light-matter coupling of a photon mode to tightly bound Frenkel excitons in organic materials...
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
The strong coupling of light and excitons in a two-dimensional semiconductor microcavity results in ...
Microcavity-polaritons are quasi-particles formed when light and matter excitations couple strongly ...