#QuantumFluids
Granada Summer School on Quantum Matter Out Of Equilibrium, September 2025.

#SummerSchool #QuantumMatter#Non-equilibriumSystems #QuantumFluids

www.quantiki.org/conference/g...
January 20, 2025 at 9:51 AM
Explores quantum turbulence beyond mean-field approximations, proposing that strong quantum fluctuations near phase transitions generate novel cascade dynamics distinct from classical fluids and weakly-interacting superfluids.

#QuantumTurbulence #QuantumFluids #Research
Quantum Turbulence in the Many-Body Regime
arxiv.org
June 24, 2026 at 6:32 AM
Technical supplement to Episode 4.

What does it take to make matter move toward the push?

Effective mass, dispersion engineering, spin-orbit coupling, dynamical instability, scale limits, and one hidden condition.

#NegativeMass #HiddenLabSeries #EffectiveMass
#ExoticMatter #QuantumFluids
September 10, 2026 at 2:52 AM
Researchers at Berkeley Lab created the first tunable Bose-Einstein Condensate of excitons in 2D semiconductors, operating at 2 Kelvin and controllable via magnetic fields. This breakthrough could enable new quantum simulations and computing technologies.

#QuantumFluids #Semiconductors #News
Tunable Exciton Bose-Einstein Condensate Observed in Atomically Thin Semiconductors
iq.fp2.dev
August 5, 2026 at 12:09 PM
Novel quantization method reveals complex energy spectra and tensor-valued effective masses for quantum vortex filaments near surfaces, enabling theoretical understanding of boundary layer formation in quantum systems.

#QuantumVortices #QuantumFluids #Research
Quantum Vortex Dynamics in Boundary Layers
arxiv.org
August 4, 2026 at 6:32 AM
Researchers discover liquid helium-4 transitions between two quantum states driven by nuclear fluctuations, revealing gas-like transport at lower temperatures. Path integral simulations challenge conventional understanding of quantum liquids.

#QuantumFluids #QuantumPhysics #News
Liquid Helium-4 Exhibits Quantum-Driven Transition Between Two Distinct Liquid States
quantumzeitgeist.com
August 1, 2026 at 12:44 PM
Numerical study of 2D exciton-polariton fluids driven by counter-propagating lasers identifies four regimes—linear, solitonic, turbulent, superfluid—governed by kinetic vs. interaction energy balance, with turbulence accessible in GaAs microcavities.

#QuantumFluids #PolaritonPhysics #Research
Quantum Turbulence in 2D Counter-Propagating Polariton Fluids
iq.fp2.dev
March 28, 2026 at 5:41 PM