English

Polariton superfluids reveal quantum hydrodynamic solitons

Quantum Gases 2015-12-03 v2 Mesoscale and Nanoscale Physics

Abstract

A quantum fluid passing an obstacle behaves differently from a classical one. When the flow is slow enough, the quantum gas enters a superfluid regime and neither whirlpools nor waves form around the obstacle. For higher flow velocities, it has been predicted that the perturbation induced by the defect gives rise to the turbulent emission of quantised vortices and to the nucleation of solitons. Using an interacting Bose gas of exciton-polaritons in a semiconductor microcavity, we report the transition from superfluidity to the hydrodynamic formation of oblique dark solitons and vortex streets in the wake of a potential barrier. The direct observation of these topological excitations provides key information on the mechanisms of superflow and shows the potential of polariton condensates for quantum turbulence studies.

Keywords

Cite

@article{arxiv.1101.2530,
  title  = {Polariton superfluids reveal quantum hydrodynamic solitons},
  author = {A. Amo and S. Pigeon and D. Sanvitto and V. G. Sala and R. Hivet and I. Carusotto and F. Pisanello and G. Lemenager and R. Houdre and E. Giacobino and C. Ciuti and A. Bramati},
  journal= {arXiv preprint arXiv:1101.2530},
  year   = {2015}
}

Comments

Published version with corrected colorbar scale for Fig. 3. Raw data available as ancillary files