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20042022
most citedGenealogical particle analysis of rare events

144 citations · 525 across the 23 of their papers we have counts for

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6 papers · 1 filter

physics.optics20221 cited

Partially Coherent Electromagnetic Beam Propagation in Random Media

Josselin Garnier, Knut Sølna

A theory for the characterization of the fourth moment of electromagnetic wave beams is presented in the case when the source is partially coherent. A Gaussian-Schell model is used…

physics.optics2020

Energy and wave-action flows underlying Rayleigh-Jeans thermalization of optical waves propagating in a multimode fiber

K. Baudin, A. Fusaro, J. Garnier +6

The wave turbulence theory predicts that a conservative system of nonlinear waves can exhibit a process of condensation, which originates in the singularity of the Rayleigh-Jeans e…

physics.optics202089 cited

Dramatic acceleration of wave condensation mediated by disorder in multimode fibers

Adrien Fusaro, Josselin Garnier, Katarzyna Krupa +2

Classical nonlinear waves exhibit a phenomenon of condensation that results from the natural irreversible process of thermalization, in analogy with the quantum Bose-Einstein conde…

physics.optics202031 cited

Wave condensation with weak disorder versus beam self-cleaning in multimode fibers

J. Garnier, A. Fusaro, K. Baudin +4

Classical nonlinear random waves can exhibit a process of condensation. It originates in the singularity of the Rayleigh-Jeans equilibrium distribution and it is characterized by t…

physics.optics2020

Rayleigh-Jeans condensation of classical light : Observation and thermodynamic characterization

K. Baudin, A. Fusaro, K. Krupa +4

Theoretical studies on wave turbulence predict that a purely classical system of random waves can exhibit a process of condensation, in analogy with the quantum Bose-Einstein conde…

physics.optics2018

Non-invasive imaging through random media

Josselin Garnier, Knut Solna

When waves propagate through a strongly scattering medium the energy is transferred to the incoherent wave part by scattering. The wave intensity then forms a random speckle patter…