Quantum Vortex Formation in the "Rotating Bucket'' Experiment with Polariton Condensates
arXiv:2208.14065 · doi:10.1126/sciadv.add1299
Abstract
The appearance of quantised vortices in the classical ``rotating bucket'' experiments of liquid helium and ultracold dilute gases provides the means for fundamental and comparative studies of different superfluids. Here, we realize the ``rotating bucket'' experiment for optically trapped quantum fluid of light based on exciton-polariton Bose-Einstein condensate in semiconductor microcavity. We utilise the beating note of two frequency-stabilized single-mode lasers to generate an asymmetric time-periodic rotating, non-resonant excitation profile that both injects and stirs the condensate through its interaction with a background exciton reservoir. The pump-induced external rotation of the condensate results in the appearance of a co-rotating quantised vortex. We investigate the rotation-frequency dependence and reveal the range of stirring frequencies (from 1 to 4 GHz) which favors quantised vortex formation. We describe the phenomenology using the generalised Gross-Pitaevskii equation. Our results enable the study of polariton superfluidity on a par with other superfluids, as well as deterministic, all-optical control over structured nonlinear light.
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- Antiferromagnetic Ising model in a triangular vortex lattice of quantum fluids of light
- Polariton vortex Chern insulator
- Vortex clusters in a stirred polariton condensate
- Spin resonance induced by a mechanical rotation of a polariton condensate
- Persistent polarization oscillations in ring-shape polariton condensates
- Structured light and induced vorticity in superconductors I: Linearly polarized light
- Exciton-polariton ring Josephson junction
- Structured light and induced vorticity in superconductors II: Quantum Print with Laguerre-Gaussian beam
- Persistent, controllable circulation of a polariton ring condensate
- Dynamics of Onsager vortex clustering in decaying turbulent polariton quantum fluids
- Time-periodic driving of a bath-coupled open quantum gas of light
- Optically trapped exciton-polariton condensates in a perovskite microcavity
- Symmetry breaking and superfluid currents in a split-ring spinor polariton condensate
- Driven-dissipative turbulence in exciton-polariton quantum fluids
- Multistable localized states in highly photonic polariton rings with a quasiperiodic modulation
- Discrete chiral ballistic polariton laser
- Tailoring the resonant spin response of a stirred polariton condensate
- Polaritonic Machine Learning for Graph-based Data Analysis