English

Onset of vortex clustering and inverse energy cascade in dissipative quantum fluids

Quantum Gases 2023-07-20 v1

Abstract

Turbulent phenomena are among the most striking effects that both classical and quantum fluids can exhibit. While classical turbulence is ubiquitous in nature, the observation of quantum turbulence requires the precise manipulation of quantum fluids such as superfluid helium or atomic Bose-Einstein condensates. In this work we demonstrate the turbulent dynamics of a 2D quantum fluid of exciton-polaritons, hybrid light-matter quasiparticles, both by measuring the kinetic energy spectrum and showing the onset of vortex clustering. We demonstrate that the formation of clusters of quantum vortices is triggered by the increase of the incompressible kinetic energy per vortex, showing the tendency of the vortex-gas towards highly excited configurations despite the dissipative nature of our system. These results lay the basis for the investigations of quantum turbulence in two-dimensional fluids of light.

Keywords

Cite

@article{arxiv.2205.02925,
  title  = {Onset of vortex clustering and inverse energy cascade in dissipative quantum fluids},
  author = {R. Panico and P. Comaron and M. Matuszewski and A. S. Lanotte and D. Trypogeorgos and G. Gigli and M. De Giorgi and V. Ardizzone and D. Sanvitto and D. Ballarini},
  journal= {arXiv preprint arXiv:2205.02925},
  year   = {2023}
}