We theoretically study two-dimensional exciton-polariton lattices and predict that non-Hermitian topological corner modes can be formed under non-resonant pumping. As a generalization of the non-Hermitian skin effect, all eigenstates are localized at the two corners in our model. This is also a higher dimensional topology compared to other proposals in exciton-polariton systems and we find that it allows propagating signals in the bulk of the system to travel around defects, which is not possible in one-dimensional topological lattices or two-dimensional lattices with Hermitian edge states. Furthermore, as all polariton states are localized away from an excitation spot, the system offers an opportunity for more accurate measurement...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
We theoretically study two-dimensional exciton-polariton lattices and predict that non-Hermitian top...
Recently realized higher order topological insulators have taken a surge of interest among the theor...
Exciton-polaritons are hybrid light-matter quasiparticles formed by strongly interacting photons and...
Unlike conventional laser, the topological laser is able to emit coherent light robustly against dis...
Topology in solid state physics gave a new way to classify materials using quantities call...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
This research was supported by the Australian Research Council, the ImPACT Program of the Council fo...
We address the resonant response and bistability of the exciton–polariton corner states in a higher-...
We present a scheme to obtain antichiral edge states in an exciton-polariton honeycomb lattice with ...
Matter in nontrivial topological phase possesses unique properties, such as support of unidirectiona...
We present a scheme to obtain antichiral edge states in an exciton-polariton honeycomb lattice with ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
We theoretically study two-dimensional exciton-polariton lattices and predict that non-Hermitian top...
Recently realized higher order topological insulators have taken a surge of interest among the theor...
Exciton-polaritons are hybrid light-matter quasiparticles formed by strongly interacting photons and...
Unlike conventional laser, the topological laser is able to emit coherent light robustly against dis...
Topology in solid state physics gave a new way to classify materials using quantities call...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
This research was supported by the Australian Research Council, the ImPACT Program of the Council fo...
We address the resonant response and bistability of the exciton–polariton corner states in a higher-...
We present a scheme to obtain antichiral edge states in an exciton-polariton honeycomb lattice with ...
Matter in nontrivial topological phase possesses unique properties, such as support of unidirectiona...
We present a scheme to obtain antichiral edge states in an exciton-polariton honeycomb lattice with ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...