none10If a quantum fluid is driven with enough angular momentum, at equilibrium the ground state of the system is given by a lattice of quantized vortices whose density is prescribed by the quantization of circulation. We report on the first experimental study of the Feynman-Onsager relation in a nonequilibrium polariton fluid, free to expand and rotate. Upon initially imprinting a lattice of vortices in the quantum fluid, we track the vortex core positions on picosecond timescales. We observe an accelerated stretching of the lattice and an outward bending of the linear trajectories of the vortices, due to the repulsive polariton interactions. Access to the full density and phase fields allows us to detect a small deviation from the Feynman...
A vortex in a superfluid gas inside an optical lattice can behave as a massive particle moving in a ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
International audienceQuantum effects of fields on curved spacetimes may be studied in the laborator...
We study the kinematic properties of a rotating vortex lattice imprinted on a freely expanding polar...
Vortices are archetypal objects that recur in the universe across the scale of complexity, from suba...
Quantum vortices, the quantized version of classical vortices, play a prominent role in superfluid an...
The study of quantum vortex dynamics in He II holds great promise to refine quantum-fluid models. Bo...
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...
The experimental investigation of spontaneously created vortices is of utmost importance for the und...
Quantized vortices appear in quantum gases at the breakdown of superfluidity. In liquid helium and c...
Artificial lattices are a powerful tool to reveal and study key interaction mechanisms between const...
We derive an effective action for the vortex-position degree of freedom in a superfluid by integrati...
Recently, exciton polaritons in a semiconductor microcavity were found to condense into a coherent g...
International audienceIn this review, we will focus on the description of the recent studies conduct...
A vortex in a superfluid gas inside an optical lattice can behave as a massive particle moving in a ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
International audienceQuantum effects of fields on curved spacetimes may be studied in the laborator...
We study the kinematic properties of a rotating vortex lattice imprinted on a freely expanding polar...
Vortices are archetypal objects that recur in the universe across the scale of complexity, from suba...
Quantum vortices, the quantized version of classical vortices, play a prominent role in superfluid an...
The study of quantum vortex dynamics in He II holds great promise to refine quantum-fluid models. Bo...
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...
The experimental investigation of spontaneously created vortices is of utmost importance for the und...
Quantized vortices appear in quantum gases at the breakdown of superfluidity. In liquid helium and c...
Artificial lattices are a powerful tool to reveal and study key interaction mechanisms between const...
We derive an effective action for the vortex-position degree of freedom in a superfluid by integrati...
Recently, exciton polaritons in a semiconductor microcavity were found to condense into a coherent g...
International audienceIn this review, we will focus on the description of the recent studies conduct...
A vortex in a superfluid gas inside an optical lattice can behave as a massive particle moving in a ...
Macroscopic quantum states can be easily created and manipulated within semiconductor microcavity ch...
International audienceQuantum effects of fields on curved spacetimes may be studied in the laborator...