Negative quench induced excitation dynamics for ultracold bosons in one-dimensional lattices
arXiv:1412.1375 · doi:10.1103/PhysRevA.91.033611
Abstract
The nonequilibrium dynamics following a quench of strongly repulsive bosonic ensembles in one-dimensional finite lattices is investigated by employing interaction quenches and/or a ramp of the lattice potential. Both sudden and time-dependent quenches are analyzed in detail. For the case of interaction quenches we address the transition from the strong repulsive to the weakly-interacting regime, suppressing in this manner the heating of the system. The excitation modes such as the cradle process and the local breathing mode are examined via local density observables. In particular, the cradle mode is inherently related to the initial delocalization and, following a negative interaction quench, can be excited only for incommensurate setups with filling larger than unity. Alternatively, a negative quench of the lattice depth which favors the spatial delocalization is used to access the cradle mode for setups with filling smaller than unity. Our results shed light on possible schemes to control the cradle and the breathing modes. Finally, employing the notion of fidelity we study the dynamical response of the system after a diabatic or adiabatic parameter modulation for short and long evolution times. The evolution of the system is obtained numerically using the ab-initio multi-layer multi-configuration time-dependent Hartree method for bosons which permits to follow non-equilibrium dynamics including the corresponding investigation of higher-band effects.
15 pages, 11 figures
References in corpus (15)
- Many-Body Physics with Ultracold Gases
- Thermalization and its mechanism for generic isolated quantum systems
- Lieb-Robinson bounds and the generation of correlations and topological quantum order
- Dynamics of Loschmidt echoes and fidelity decay
- The multi-configurational time-dependent Hartree method for bosons: Many-body dynamics of bosonic systems
- Fragmentation of Bose-Einstein Condensates
- Pinning quantum phase transition for a Luttinger liquid of strongly interacting bosons
- Role of excited states in the splitting dynamics of interacting Bose-Einstein condensates when ramping-up a barrier
- Reduced density matrices and coherence of trapped interacting bosons
- Suppression of Quantum Scattering in Strongly Confined Systems
- Quantum Breathing of an Impurity in a One-dimensional Bath of Interacting Bosons
- Many-body theory for systems with particle conversion: Extending the multiconfigurational time-dependent Hartree method
- Quantum Breathing Mode of Interacting Particles in a One-dimensional Harmonic Trap
- Invariance of the Kohn (sloshing) mode in a conserving theory
- Cold atoms in real-space optical lattices