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20182020
most citedMicrocavity polaritons for topological photonics

2 citations · 2 across the 1 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall20202 cited

Microcavity polaritons for topological photonics

Dmitry D. Solnyshkov, Guillaume Malpuech, Philippe St-Jean +3

Microcavity polaritons are light-matter quasiparticles that arise from the strong coupling between excitons and photons confined in a semiconductor microcavity. They typically oper…

cond-mat.mes-hall2020

Semi-Dirac Transport and Anisotropic Localization in Polariton Honeycomb Lattices

B. Real, O. Jamadi, M. Milićević +11

Compression dramatically changes the transport and localization properties of graphene. This is intimately related to the change of symmetry of the Dirac cone when the particle hop…

cond-mat.mes-hall2019

Nonlinear Polariton Fluids in a Flatband Reveal Discrete Gap Solitons

V. Goblot, B. Rauer, F. Vicentini +10

Phase frustration in periodic lattices is responsible for the formation of dispersionless flat bands. The absence of any kinetic energy scale makes flat band physics critically sen…

cond-mat.mes-hall2019

Nonlinear optics in the fractional quantum Hall regime

Patrick Knüppel, Sylvain Ravets, Martin Kroner +3

Engineering strong interactions between optical photons is a great challenge for quantum science. Envisioned applications range from the realization of photonic gates for quantum i…

physics.optics2018

Orbital angular momentum bistability in a microlaser

Nicola Carlon Zambon, Philippe St-Jean, Aristide Lemaître +6

Light's orbital angular momentum (OAM) is an unbounded degree of freedom emerging in helical beams that appears very advantageous technologically. Using a chiral microlaser, i.e. a…

physics.optics2018

Optically controlling the emission chirality of microlasers

Nicola Carlon Zambon, Philippe St-Jean, Marijana Milićević +10

Orbital angular momentum (OAM) carried by helical light beams is an unbounded degree of freedom of photons that offers a promising playground in modern photonics. So far, integrate…