International audienceThe observation of Bose-Einstein condensation, in which particle interactions lead to a thermodynamic transition into a single, macroscopically populated coherent state, is a triumph of modern physics(1-5). It is commonly assumed that this transition is a quantum process, relying on quantum statistics, but recent studies in wave turbulence theory have suggested that classical waves with random phases can condense in a formally identical manner(6-9). In complete analogy with gas kinetics, particle velocities map to wavepacket k-vectors, collisions are mimicked by four-wave mixing, and entropy principles drive the system towards an equipartition of energy. Here, we use classical light in a self-defocusing photorefractive...
We study the formation of large-scale coherent structures (condensates) for a system of two weakly i...
Modern optics enables precision control over the laser field entering a nonlinear optical crystal. T...
Open quantum systems can be systematically controlled by making changes to their environment. A well...
7 pages, 3 figuresInternational audienceTheoretical studies on wave turbulence predict that a purely...
We study the formation of a large-scale coherent structure (a condensate) in classical wave equation...
Bose-Einstein condensation is a very general physical phenomenon which takes place not only in the s...
Bose–Einstein condensation is a very general physical phenomenon which takes place not only in the s...
International audienceClassical nonlinear waves exhibit a phenomenon of condensation that results fr...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
We study the formation of large-scale coherent structures (condensates) for a system of two weakly i...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
Bose-Einstein condensates of dilute gases provide a rich and versatile platform to study both single...
International audienceThe nonlinear Schrödinger equation, used to describe the dynamics of quantum f...
We study the formation of large-scale coherent structures (condensates) for a system of two weakly i...
Modern optics enables precision control over the laser field entering a nonlinear optical crystal. T...
Open quantum systems can be systematically controlled by making changes to their environment. A well...
7 pages, 3 figuresInternational audienceTheoretical studies on wave turbulence predict that a purely...
We study the formation of a large-scale coherent structure (a condensate) in classical wave equation...
Bose-Einstein condensation is a very general physical phenomenon which takes place not only in the s...
Bose–Einstein condensation is a very general physical phenomenon which takes place not only in the s...
International audienceClassical nonlinear waves exhibit a phenomenon of condensation that results fr...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
A Bose-Einstein condensate represents the most 'classical' form of a matter wave, just as an optical...
We study the formation of large-scale coherent structures (condensates) for a system of two weakly i...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
Bose-Einstein condensates of dilute gases provide a rich and versatile platform to study both single...
International audienceThe nonlinear Schrödinger equation, used to describe the dynamics of quantum f...
We study the formation of large-scale coherent structures (condensates) for a system of two weakly i...
Modern optics enables precision control over the laser field entering a nonlinear optical crystal. T...
Open quantum systems can be systematically controlled by making changes to their environment. A well...