Publication | Open Access
Transport of a Bose Gas in 1D Disordered Lattices at the Fluid-Insulator Transition
52
Citations
39
References
2013
Year
Quantum LiquidQuantum Lattice SystemEngineeringMomentum-dependent TransportNondisordered LatticesSuperconductivityQuantum MaterialsUltracold AtomTransport PhenomenaDisordered LatticesQuantum SciencePhysicsSharp CrossoverBose GasBose-einstein CondensationApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemFluid-insulator Transition
We investigate the momentum-dependent transport of 1D quasicondensates in quasiperiodic optical lattices. We observe a sharp crossover from a weakly dissipative regime to a strongly unstable one at a disorder-dependent critical momentum. In the limit of nondisordered lattices the observations suggest a contribution of quantum phase slips to the dissipation. We identify a set of critical disorder and interaction strengths for which such critical momentum vanishes, separating a fluid regime from an insulating one. We relate our observation to the predicted zero-temperature superfluid-Bose glass transition.
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