Decay of a superfluid currents in a moving system of strongly interacting bosons
arXiv:cond-mat/0412497 · doi:10.1103/PhysRevA.71.063613
Abstract
We analyze the stability and decay of supercurrents of strongly interacting bosons on optical lattices. At the mean field level, the system undergoes an irreversible dynamic phase transition, whereby the current decays beyond a critical phase gradient that depends on the interaction strength. At commensurate filling the transition line smoothly interpolates between the classical modulational instability of weakly interacting bosons and the equilibrium Mott transition at zero current. Below the mean field instability, the current can decay due to quantum and thermal phase slips. We derive asymptotic expressions of the decay rate near the critical current. In a three dimensional optical lattice this leads to very weak broadening of the transition. In one and two dimensions the broadening leads to significant current decay well below the mean field critical current. We show that the temperature scale below which quantum phase slips dominate the decay of supercurrents, is easily within experimental reach.
Updated references, minor corrections, updated summary
References in corpus (7)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Instabilities in binary mixtures of one-dimensional quantum degenerate gases
- Non-equilibrium Gross-Pitaevskii dynamics of boson lattice models
- Quantum corrections to the dynamics of interacting bosons: beyond the truncated Wigner approximation
- Evolution of the macroscopically entangled states in optical lattices
- Effect of quantum fluctuations on the dipolar motion of Bose-Einstein condensates in optical lattices
- Decay of super-currents in condensates in optical lattices
Cited by in corpus (37)
- Many-Body Physics with Ultracold Gases
- The `Higgs' Amplitude Mode at the Two-Dimensional Superfluid-Mott Insulator Transition
- Phase diagram for a Bose-Einstein condensate moving in an optical lattice
- Phase-slip induced dissipation in an atomic Bose-Hubbard system
- Dynamical and energetic instabilities in multi-component Bose-Einstein condensates in optical lattices
- Some remarks on the coherent-state variational approach to nonlinear boson models
- Ground state cooling of atoms in optical lattices
- Dynamical instabilities of Bose-Einstein condensates at the band-edge in one-dimensional optical lattices
- Landau damping: instability mechanism of superfluid Bose gases moving in optical lattices
- Collective modes and superflow instabilities of strongly correlated Fermi superfluids
- Superfluidity and Stabilities of a Bose-Einstein condensate with periodically modulated interatomic interaction
- Heavily Damped Motion of One-Dimensional Bose Gases in an Optical Lattice
- Supercurrent survival under Rosen-Zener quench of hard core bosons
- Dipole oscillations of confined lattice bosons in one dimension
- Persistent current of atoms in a ring optical lattice
- Coherent phase slips in coupled matter-wave circuits
- Decay of superfluid currents in the interacting one-dimensional Bose gas
- Metastability, excitations, fluctuations, and multiple-swallowtail structures of a superfluid in a Bose-Einstein condensate in the presence of a uniformly moving defect
- Superfluidity in Bose-Hubbard circuits
- Emergence of superfluid transport in a dynamical system of ultracold atoms
- Quantum Phase Slips: from condensed matter to ultracold quantum gases
- Transverse instability and universal decay of spin spiral order in the Heisenberg model
- Quantum fluctuations in one-dimensional supersolids
- Dynamics of rotated spin states and magnetic ordering with two-component bosonic atoms in optical lattices
- Dissipative and nonequilibrium effects near a superconductor-metal quantum critical point
- Exploring quantum phase slips in 1D bosonic systems
- Superfluidity breakdown of periodic matter waves in quasi one-dimensional annular traps via resonant scattering with moving defects
- Quantum dynamics of instability-induced pulsations of a Bose-Einstein condensate in an optical lattice
- Density Modulations Associated with the Dynamical Instability in the Bose-Hubbard Model
- Stability of supercurrents in a superfluid phase of spin-1 bosons in an optical lattice
- Probing Sound Speed of an Optically-Trapped Bose Gas with Periodically Modulated Interactions by Bragg Spectroscopy
- Chaos, Metastability and Ergodicity in Bose-Hubbard Superfluid Circuits
- Influence of quantum fluctuations on the superfluid critical velocity of a one-dimensional Bose gas
- Propagation of phase-imprinted solitons from superfluid core to Mott-insulator shell and superfluid shell
- Persistent-current states originating from the Hilbert space fragmentation in momentum space
- Stability of current-carrying states in hard-core bosons with long-range hopping on a square lattice
- Analog cosmology with spinor Bose-Einstein condensates