AbstractIn this review, we will focus on the description of the recent studies conducted in the quest for the observation of lattices of quantized vortices in resonantly injected polariton superfluids. In particular, we will show how the implementation of optical traps for polaritons allows for the realization of vortex–antivortex lattices in confined geometries and how the development of a flexible method to inject a controlled orbital angular momentum (OAM) in such systems results in the observation of patterns of same-sign vortices
Artificial lattices are a powerful tool to reveal and study key interaction mechanisms between const...
Generally, an optical vortex lattice (OVL) is generated via the superposition of two specific vortex...
We study the kinematic properties of a rotating vortex lattice imprinted on a freely expanding polar...
International audienceIn this review, we will focus on the description of the recent studies conduct...
AbstractIn this review, we will focus on the description of the recent studies conducted in the ques...
Topological defects such as quantized vortices are one of the most striking manifestations of the su...
Abstract This chapter reviews the occurrence of quantised vortices in polariton flu-ids, primarily w...
We report the experimental investigation and theoretical modeling of a rotating polariton superfluid...
Atomic clouds in a rotating optical lattice are at the intellectual intersection of several major pa...
Exciton-polariton condensates display a variety of intriguing pattern-forming behaviors, particularl...
none10If a quantum fluid is driven with enough angular momentum, at equilibrium the ground state of ...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
The combination of a rotating cigar-shaped Bose-Einstein condensate with a one-dimensional optical l...
Artificial lattices are a powerful tool to reveal and study key interaction mechanisms between const...
Generally, an optical vortex lattice (OVL) is generated via the superposition of two specific vortex...
We study the kinematic properties of a rotating vortex lattice imprinted on a freely expanding polar...
International audienceIn this review, we will focus on the description of the recent studies conduct...
AbstractIn this review, we will focus on the description of the recent studies conducted in the ques...
Topological defects such as quantized vortices are one of the most striking manifestations of the su...
Abstract This chapter reviews the occurrence of quantised vortices in polariton flu-ids, primarily w...
We report the experimental investigation and theoretical modeling of a rotating polariton superfluid...
Atomic clouds in a rotating optical lattice are at the intellectual intersection of several major pa...
Exciton-polariton condensates display a variety of intriguing pattern-forming behaviors, particularl...
none10If a quantum fluid is driven with enough angular momentum, at equilibrium the ground state of ...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
The combination of a rotating cigar-shaped Bose-Einstein condensate with a one-dimensional optical l...
Artificial lattices are a powerful tool to reveal and study key interaction mechanisms between const...
Generally, an optical vortex lattice (OVL) is generated via the superposition of two specific vortex...
We study the kinematic properties of a rotating vortex lattice imprinted on a freely expanding polar...