Quantum nonlinear optics is a quickly growing field with large technological promise, at the same time involving complex and novel many-body phenomena. In the usual scenario, optical nonlinearities originate from the interactions between polaritons, which are hybrid quasi-particles mixing matter and light degrees of freedom. Here we introduce a type of polariton which is intrinsically nonlinear and emerges as the natural quasi-particle in presence quantum degenerate fermionic matter. It is a composite object made of a fermion trapped inside an optical soliton forming a topological defect in a spontaneously formed crystalline structure. Each of these soliton-polaritons carries a Z2 topological quantum number, as they create a domain wall bet...
Semiconductor microcavities have emerged as a powerful platform for the study of interacting quantum...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
Strong coupling between electronic excitations in materials and photon modes results in the formatio...
Quantum nonlinear optics is a quickly growing field with large technological promise, at the same ti...
Matter in nontrivial topological phase possesses unique properties, such as support of unidirectiona...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
Attractive ultracold fermions trapped in a one-dimensional periodically shaken optical lattice are c...
The interaction between light and matter can give rise to novel topological states. This principle w...
Solitons of a nonlinear field interacting with fermions often acquire a fermionic number or an elect...
Excitons are bound hydrogen-like states of electrons and holes, typically appear- ing in semiconduct...
International audienceNonlinear topological photonics is an emerging field that aims to extend the f...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
Motivated by the sustained interest in Bose Einstein condensates and the recent progress in the unde...
Semiconductor microcavities have emerged as a powerful platform for the study of interacting quantum...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
Strong coupling between electronic excitations in materials and photon modes results in the formatio...
Quantum nonlinear optics is a quickly growing field with large technological promise, at the same ti...
Matter in nontrivial topological phase possesses unique properties, such as support of unidirectiona...
Nonlinear topological photonics is an emerging field aiming at extending the fascinating properties ...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
Attractive ultracold fermions trapped in a one-dimensional periodically shaken optical lattice are c...
The interaction between light and matter can give rise to novel topological states. This principle w...
Solitons of a nonlinear field interacting with fermions often acquire a fermionic number or an elect...
Excitons are bound hydrogen-like states of electrons and holes, typically appear- ing in semiconduct...
International audienceNonlinear topological photonics is an emerging field that aims to extend the f...
Topological insulators—materials that are insulating in the bulk but allow electrons to flow on thei...
Motivated by the sustained interest in Bose Einstein condensates and the recent progress in the unde...
Semiconductor microcavities have emerged as a powerful platform for the study of interacting quantum...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
Strong coupling between electronic excitations in materials and photon modes results in the formatio...