Role of trap-induced scales in non-equilibrium dynamics of strongly interacting trapped bosons
arXiv:1406.0849
Abstract
We use a time-dependent hopping expansion technique to study the non-equilibrium dynamics of strongly interacting bosons in an optical lattice in the presence of a harmonic trap characterized by a force constant . We show that after a sudden quench of the hopping amplitude across the superfluid (SF)-Mott insulator(MI) transition, the SF order parameter and the local density fluctuation exhibit sudden decoherence beyond a trap-induced time scale . We also show that after a slow linear ramp down of , and the boson defect density display a novel non-monotonic spatial profile. Both these phenomena can be explained as consequences of trap-induced time and length scales affecting the dynamics and can be tested by concrete experiments.
4 pages, 4 figs + Supplementary Materials; v2, minor typos corrected