Nonequilibrium Dynamics of Optical Lattice-Loaded BEC Atoms: Beyond HFB Approximation
arXiv:cond-mat/0308305 · doi:10.1103/PhysRevA.69.033610
Abstract
In this work a two-particle irreducible (2PI) closed-time-path (CTP) effective action is used to describe the nonequilibrium dynamics of a Bose Einstein condensate (BEC) selectively loaded into every third site of a one-dimensional optical lattice. The motivation of this work is the recent experimental realization of this system at National Institute of Standards and Technology (NIST) where the placement of atoms in an optical lattice is controlled by using an intermediate superlattice. Under the 2PI CTP scheme with this initial configuration, three different approximations are considered: a) the Hartree-Fock-Bogoliubov (HFB) approximation, b) the next-to-leading order 1/ expansion of the 2PI effective action up to second order in the interaction strength and c) a second order perturbative expansion in the interaction strength. We present detailed comparisons between these approximations and determine their range of validity by contrasting them with the exact many body solution for a moderate number of atoms and wells. As a general feature we observe that because the second order 2PI approximations include multi-particle scattering in a systematic way, they are able to capture damping effects exhibited in the exact solution that a mean field collisionless approach fails to produce. While the second order approximations show a clear improvement over the HFB approximation our numerical result shows that they do not work so well at late times, when interaction effects are significant.
34 pages, 7 figures
References in corpus (8)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Creation of ultracold molecules from a Fermi gas of atoms
- Theory of the Weakly Interacting Bose Gas
- Non-equilibrium Gross-Pitaevskii dynamics of boson lattice models
- Bogoliubov approach to superfluidity of atoms in an optical lattice
- The response of Bose-Einstein condensates to external perturbations at finite temperature
- Dynamics of a period-three pattern loaded Bose-Einstein condensate in an optical lattice
- Effective-action approach to a trapped Bose gas
Cited by in corpus (53)
- Keldysh Field Theory for Driven Open Quantum Systems
- Finite Temperature Models of Bose-Einstein Condensation
- Prethermal Floquet Steady States and Instabilities in the Periodically Driven, Weakly Interacting Bose-Hubbard Model
- Interaction-controlled transport of an ultracold Fermi gas
- Quantum quenches in the anisotropic spin-1/2 Heisenberg chain: different approaches to many-body dynamics far from equilibrium
- Emergent/Quantum Gravity: Macro/Micro Structures of Spacetime
- Quantum versus classical statistical dynamics of an ultracold Bose gas
- Far-from-equilibrium field theory of many-body quantum spin systems: Prethermalization and relaxation of spin spiral states in three dimensions
- Emergent Models for Gravity: an Overview of Microscopic Models
- Can Spacetime be a Condensate?
- Quantum Many-Body Dynamics of Coupled Double-Well Superlattices
- Nonperturbative dynamical many-body theory of a Bose-Einstein condensate
- Matter Wave Turbulence: Beyond Kinetic Scaling
- Probing many-body interactions in an optical lattice clock
- Incoherent matter-wave solitons
- Early Universe Quantum Processes in BEC Collapse Experiments
- Quantum depletion of collapsing Bose-Einstein condensates
- Two-component gap solitons in two- and one-dimensional Bose-Einstein condensates
- Nonlinear Lattice Dynamics of Bose-Einstein Condensates
- Nonequilibrium Atom-Dielectric Forces Mediated by a Quantum Field
- Nonequilibrium Steady State in Open Quantum Systems: Influence Action, Stochastic Equation and Power Balance
- Dynamics and Manipulation of Matter-Wave Solitons in Optical Superlattices
- Schwinger-Keldysh approach to out of equilibrium dynamics of the Bose Hubbard model with time varying hopping
- Adaptive Numerical Solution of Kadanoff-Baym Equations
- Nonequilibrium Forces Between Neutral Atoms Mediated by a Quantum Field
- Ultracold gases far from equilibrium
- Auxiliary field approach to dilute Bose gases with tunable interactions
- Light-cone like spreading of single-particle correlations in the Bose-Hubbard model after a quantum quench in the strong coupling regime
- Non-equilibrium Quantum Spin Dynamics from 2PI Functional Integral Techniques in the Schwinger Boson Representation
- Quantum Kinetic Theory of BEC Lattice Gas:Boltzmann Equations from 2PI-CTP Effective Action
- Bose - Einstein Condensate Superfluid-Mott Insulator Transition in an Optical Lattice
- Mean-field treatment of the damping of the oscillations of a 1D Bose gas in an optical lattice
- Bose-Einstein Condensates in Superlattices
- Partially incoherent gap solitons in Bose-Einstein condensates
- Non-equilibrium dynamics of a Bose-Einstein condensate in an optical lattice
- Far from equilibrium field theory for strongly coupled light and matter: dynamics of frustrated multi-mode cavity QED
- Comparative studies of many-body corrections to an interacting Bose condensate
- 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
- Analytical limits for cold atom Bose gases with tunable interactions
- Temporal non-equilibrium dynamics of a Bose Josephson junction in presence of incoherent excitations
- Coarse-Grained Finite-Temperature Theory for the Condensate in Optical Lattices
- Real-time effective-action approach to the Anderson quantum dot
- Superfluid Dynamics of a Bose-Einstein Condensate in a One Dimensional Optical Super-Lattice
- The Bose Hubbard model with squeezed dissipation
- Reflection of a Lieb-Liniger wave packet from the hard-wall potential
- Coherence Properties of a Bose-Einstein Condensate in an Optical Superlattice
- Schwinger-Keldysh non-perturbative field theory of open quantum systems beyond the Markovian regime: Application to spin-boson and spin-chain-boson models
- Macroscopic Quantum Phenomena from the Correlation, Coupling and Criticality Perspectives
- Gauge-invariant Effective Action for the Dynamics of Bose-Einstein condensates with a fixed number of atoms
- Non-equilibrium Quantum Many-Body Dynamics: Functional Integral Approaches
- Luttinger liquid in superlattice structures: atomic gases, quantum dots and the classical Ising chain
- Expansion dynamics of strongly correlated lattice bosons: A selfconsistent density-matrix approach
- Quasiperiodic Dynamics in Bose-Einstein Condensates in Periodic Lattices and Superlattices