Cooling and Near-equilibrium Dynamics of Atomic Gases Across the Superfluid-Mott Insulator Transition
arXiv:0910.1382 · doi:10.1103/PhysRevLett.104.160403
Abstract
We study near-equilibrium thermodynamics of bosonic atoms in a two-dimensional optical lattice by ramping up the lattice depth to convert a superfluid into an inhomogeneous mixture of superfluid and Mott insulator. Detailed study of in situ density profiles shows that, first, locally adiabatic ramps do not guarantee global thermal equilibrium. Indeed, full thermalization for typical parameters only occurs for experiment times which exceed one second. Secondly, ramping non-adiabatically to the Mott insulator regime can result in strong localized cooling at short times and global cooling once equilibrated. For an initial temperature estimated as 20 nK, we observe local temperatures as low as 1.5 nK, and a final global temperature of 9 nK. Possible cooling mechanisms include adiabatic decompression, modification of the density of states near the quantum critical regime, and the Joule-Thomson effect. **NOTE: Following submission of arXiv:0910.1382v1, a systematic correction was discovered in the density measurement, stemming from three-body losses during the imaging process. New measurements were performed, and the result is in support of the claim on the slow global dynamics. Due to the substantially altered methods and analysis, a new text has been posted as arXiv:1003.0855.
This paper has been withdrawn by the authors. See NOTE.
References in corpus (11)
- Many-Body Physics with Ultracold Gases
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
- Repulsively bound atom pairs in an optical lattice
- Monte Carlo study of two-dimensional Bose-Hubbard model
- Fast, Runaway Evaporative Cooling to Bose-Einstein Condensation in Optical Traps
- Phase diagram for a Bose-Einstein condensate moving in an optical lattice
- Condensate fraction in a 2D Bose gas measured across the Mott-insulator transition
- Boson Mott insulators at finite temperatures
- Superfluid-insulator transition in a moving system of interacting bosons
- Intrinsic Heating and Cooling in Adiabatic Processes for Bosons in Optical Lattices
Cited by in corpus (83)
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Probing the Superfluid to Mott Insulator Transition at the Single Atom Level
- Fermi gases in one dimension: From Bethe Ansatz to experiments
- Fermionic transport in a homogeneous Hubbard model: Out-of-equilibrium dynamics with ultracold atoms
- Alternatives to Eigenstate Thermalization
- Long-range interacting quantum systems
- Observation of scale invariance and universality in two-dimensional Bose gases
- Quantum transport in ultracold atoms
- Artificial graphene with tunable interactions
- Cooling in strongly correlated optical lattices: prospects and challenges
- Spin gradient demagnetization cooling of ultracold atoms
- Lifetime of double occupancies in the Fermi-Hubbard model
- Cooling and entangling ultracold atoms in optical lattices
- Quantum critical behavior of ultracold atoms in two-dimensional optical lattices
- Creating and probing the Sachdev-Ye-Kitaev model with ultracold gases: Towards experimental studies of quantum gravity
- Universal nonequilibrium quantum dynamics in imaginary time
- Extracting density-density correlations from in situ images of atomic quantum gases
- Long timescale dynamics of spin textures in a degenerate F=1 Rb spinor Bose gas
- Thermometry with spin-dependent lattices
- Heating rates for an atom in a far-detuned optical lattice
- Metastability and avalanche dynamics in strongly-correlated gases with long-range interactions
- Strongly Interacting Two-Dimensional Bose Gases
- Universal Thermometry for Quantum Simulation
- Local versus global equilibration near the bosonic Mott-superfluid transition
- Slow quench dynamics of a trapped one-dimensional Bose gas confined to an optical lattice
- Slow quench dynamics of periodically driven quantum gases
- Finite temperature study of bosons in a two dimensional optical lattice
- Expansion potentials for exact far-from-equilibrium spreading of particles and energy
- Correlation dynamics during a slow interaction quench in a one-dimensional Bose gas
- Bosonic and fermionic transport phenomena of ultra-cold atoms in 1D optical lattices
- Enlarging and cooling the Néel state in an optical lattice
- Techniques to measure quantum criticality in cold atoms
- Slow quench dynamics of Mott-insulating regions in a trapped Bose gas
- Spontaneous emissions and thermalization of cold bosons in optical lattices
- Relaxation dynamics of a Fermi gas in an optical superlattice
- Expansion of Bose-Hubbard Mott insulators in optical lattices
- Quantum Criticality from in-situ Density Imaging
- Collapse and revival dynamics of superfluids of ultracold atoms in optical lattices
- Schwinger-Keldysh approach to out of equilibrium dynamics of the Bose Hubbard model with time varying hopping
- Exploring quantum criticality based on ultracold atoms in optical lattices
- Self-trapping in an array of coupled 1D Bose gases
- Effect of interactions on harmonically confined Bose-Fermi mixtures in optical lattices
- Quench from Mott Insulator to Superfluid
- Thermal conductivity of the one-dimensional Fermi-Hubbard model
- Interaction-induced conducting-nonconducting transition of ultra-cold atoms in 1D optical lattices
- Preparation of Low Entropy Correlated Many-body States via Conformal Cooling Quenches
- Static and Dynamic Properties of Interacting Spin-1 Bosons in an Optical Lattice
- Controlling Transport of Ultra-Cold Atoms in 1D Optical Lattices with Artificial Gauge Fields
- Light-cone like spreading of single-particle correlations in the Bose-Hubbard model after a quantum quench in the strong coupling regime
- Information-theoretic equilibrium and observable thermalization
- Dynamics of correlations in a quasi-2D dipolar Bose gas following a quantum quench
- Site-Resolved Imaging of Bosonic Mott Insulator of Li atoms
- Evolution of condensate fraction during rapid lattice ramps
- Experimental Determination of Bose-Hubbard Energies
- Bosonic quantum dynamics following a linear interaction quench in finite optical lattices of unit filling
- Critical phenomena in one dimension from a Bethe ansatz perspective
- Phase and group velocities for correlation spreading in the Mott phase of the Bose-Hubbard model in dimensions greater than one
- Phase-induced transport in atomic gases: from superfluid to Mott insulator
- Slow interaction ramps in trapped many-particle systems: universal deviations from adiabaticity
- Interaction ramps in a trapped Bose condensate
- Evolution of Coherence During Ramps Across the Mott-Superfluid Phase Boundary
- Confinement: a real-time visualization
- Contour-time approach to the Bose-Hubbard model in the strong coupling regime: Studying two-point spatio-temporal correlations at the Hartree-Fock-Bogoliubov level
- Exotic pairing in 1D spin-3/2 atomic gases with symmetry
- Relaxation of Fermionic Excitations in a Strongly Attractive Fermi Gas in an Optical Lattice
- Disorder-controlled relaxation in a 3D Hubbard model quantum simulator
- Anomalous thermoelectric transport in two-dimensional Bose gas
- Atom number filter in an optical lattice
- Domain wall dynamics in a two-component Bose-Mott insulator
- Role of interactions in time-of-flight expansion of atomic clouds from optical lattices
- Strong-coupling expansion for ultracold bosons in an optical lattice at finite temperatures in the presence of superfluidity
- Probing Phases and Quantum Criticality using Deviations from the Local Fluctuation-Dissipation Theorem
- Bogoliubov approach to superfluid-Bose glass phase transition of a disordered Bose-Hubbard Model in weakly interacting regime
- Loading and detecting a three-dimensional Fermi gas in one-dimensional optical superlattice
- Creating atom-number states around tapered optical fibres by loading from an optical lattice
- Contour-time approach to the disordered Bose-Hubbard model in the strong coupling regime
- Application of the inhomogeneous Kibble-Zurek mechanism to quench dynamics in the transition from a Mott-insulator to a superfluid in a finite system
- Dynamical symmetry between spin and charge excitations studied by a plaquette mean-field approach in two dimensions
- Interacting Stark localization dynamics in a three-dimensional lattice Bose gas
- Study of surface potentials using resonant tunneling of cold atoms in optical lattices
- Sudden and slow quenches into the antiferromagnetic phase of ultracold fermions
- Dynamics of the Mott Insulator to Superfluid quantum phase transition in the truncated Wigner approximation
- Machine Learning out of equilibrium correlations in the Bose-Hubbard model