Topological photonics provides an important platform for the development of photonic devices with robust disorder-immune light transport and controllable helicity. Mixing photons with excitons (or polaritons) gives rise to nontrivial polaritonic bands with chiral modes, allowing the manipulation of helical lasers in strongly coupled light-matter systems. In this work, helical polariton lasing from topological valleys of an organic anisotropic microcrystalline cavity based on tailored local nontrivial band geometry is demonstrated. This polariton laser emits light of different helicity along different angular directions. The significantly enhanced chiral characteristics are achieved by the nonlinear relaxation process. Helical topological po...
This article presents a review of the lasing and photonic properties of periodic one-dimensional ani...
We present a beyond-mean-field approach to predict the nature of organic polariton lasing, accountin...
The simulation of lattice Hamiltonians in photonic platforms has been enlightening in the understand...
Topological concepts have been applied to a wide range of fields in order to successfully describe t...
Topological concepts have been applied to a wide range of fields in order to successfully describe t...
19 pages, 8 figures, review articleInternational audienceMicrocavity polaritons are light-matter qua...
Unlike conventional laser, the topological laser is able to emit coherent light robustly against dis...
We investigate the dynamics of chiral edge states in topological polariton systems under laser drivi...
We consider exciton-polaritons in a honeycomb lattice of micropillars subjected to circularly polari...
Strong light-matter interaction enriches topological photonics by dressing light with matter, which ...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
Organic exciton-photon polariton lasers are promising candidates for the efficient generation of coh...
The interaction between light and matter can give rise to novel topological states. This principle w...
Microcavity polaritons originate from the strong coupling between cavity photons and electronic exci...
We present a scheme of interaction-induced topological band structures based on the spin anisotropy ...
This article presents a review of the lasing and photonic properties of periodic one-dimensional ani...
We present a beyond-mean-field approach to predict the nature of organic polariton lasing, accountin...
The simulation of lattice Hamiltonians in photonic platforms has been enlightening in the understand...
Topological concepts have been applied to a wide range of fields in order to successfully describe t...
Topological concepts have been applied to a wide range of fields in order to successfully describe t...
19 pages, 8 figures, review articleInternational audienceMicrocavity polaritons are light-matter qua...
Unlike conventional laser, the topological laser is able to emit coherent light robustly against dis...
We investigate the dynamics of chiral edge states in topological polariton systems under laser drivi...
We consider exciton-polaritons in a honeycomb lattice of micropillars subjected to circularly polari...
Strong light-matter interaction enriches topological photonics by dressing light with matter, which ...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
Organic exciton-photon polariton lasers are promising candidates for the efficient generation of coh...
The interaction between light and matter can give rise to novel topological states. This principle w...
Microcavity polaritons originate from the strong coupling between cavity photons and electronic exci...
We present a scheme of interaction-induced topological band structures based on the spin anisotropy ...
This article presents a review of the lasing and photonic properties of periodic one-dimensional ani...
We present a beyond-mean-field approach to predict the nature of organic polariton lasing, accountin...
The simulation of lattice Hamiltonians in photonic platforms has been enlightening in the understand...