Slow quench dynamics of periodically driven quantum gases
arXiv:1105.0686 · doi:10.1103/PhysRevA.84.013615
Abstract
We study the evolution of bosons in a periodically driven optical lattice during a slow change of the driving amplitude. Both the regime of high frequency and low frequency driving are investigated. In the low frequency regime, resonant absorption of energy is observed. In the high frequency regime, the dynamics is compared to a system with an effective Hamiltonian in which the atoms are `dressed' by the driving field. This `dressing' can dramatically change the amplitude and sign of the effective tunneling. A particular focus of this study is the investigation of the time-scales necessary for the evolving quantum state to follow almost adiabatically to the ground-state of the effective many body system.
10 pages, 8 figures
References in corpus (21)
- Many-Body Physics with Ultracold Gases
- Photovoltaic Hall effect in graphene
- Real time evolution using the density matrix renormalization group
- Probing the Superfluid to Mott Insulator Transition at the Single Atom Level
- Dynamical control of matter-wave tunneling in periodic potentials
- Coherent control of dressed matter waves
- Single Particle Tunneling in Strongly Driven Double Well Potentials
- Dynamical band flipping in fermionic lattice systems: An ac-field-driven change of the interaction from repulsive to attractive
- Spectroscopy of ultracold atoms by periodic lattice modulations
- Coherent Delocalization of Atomic Wave Packets in Driven Lattice Potentials
- Slow Mass Transport and Statistical Evolution of An Atomic Gas Across the Superfluid-Mott Insulator Transition
- AC-induced superfluidity
- 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
- Effective time-independent description of optical lattices with periodic driving
- Spectroscopy for cold atom gases in periodically phase-modulated optical lattices
- Signatures of the superfluid to Mott-insulator transition in the excitation spectrum of ultracold atoms
- Dressed matter waves
- Accurate determination of the superfluid-insulator transition in the one-dimensional Bose-Hubbard model
- Competing Superconducting States for Ultracold Atoms in Optical Lattices with Artificial Staggered Magnetic Field
- Adiabatic dynamics in a spin-1 chain with uniaxial single-spin anisotropy
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- Many-body Landau-Zener Transition in Cold Atom Double Well Optical Lattices
- Polarization selectivity of charge localization induced by 7-fs nearly single-cycle light-field in an organic metal
- Dynamically enhanced unconventional superconducting correlations in a Hubbard ladder
- Controlling disorder with periodically modulated interactions
- High-Frequency Analysis of Effective Interactions and Bandwidth for Transient States after Monocycle Pulse Excitation of Extended Hubbard Model
- Momentum resolved Floquet-engineered pair and single particle filter in the Fermi Hubbard model
- Trapped Ultracold Bosons in Periodically Modulated Lattices
- Role of correlations and off-diagonal terms in binary disordered one dimensional systems
- Photoinduced High-Frequency Charge Oscillations in Dimerized Systems
- Periodically Driven Many-Body Systems: A Floquet Density Matrix Renormalization Group Study
- Following Floquet states in high-dimensional Hilbert spaces
- Effective Hamiltonians for almost-periodically driven quantum systems
- Cold Atoms in Driven Optical Lattices
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