English

Particle-Hole Pair Coherence in Mott Insulator Quench Dynamics

Quantum Gases 2014-11-06 v1

Abstract

We predict the existence of novel collapse and revival oscillations that are a distinctive signature of the short-range off-diagonal coherence associated with particle-hole pairs in Mott insulator states. Starting with an atomic Mott state in a one-dimensional optical lattice, suddenly raising the lattice depth freezes the particle-hole pairs in place and induces phase oscillations. The peak of the quasi-momentum distribution, revealed through time of flight interference, oscillates between a maximum occupation at zero quasi-momentum (the Γ\Gamma point) and the edge of the Brillouin zone. We show that the population enhancements at the edge of the Brillouin zone is due to coherent particle-hole pairs, and we find similar effects for fermions and Bose-Fermi mixtures in a lattice. Our results open a new avenue for probing strongly correlated many-body states with short-range phase coherence that goes beyond the familiar collapse and revivals previously observed in the long-range coherent superfluid regime.

Keywords

Cite

@article{arxiv.1401.6648,
  title  = {Particle-Hole Pair Coherence in Mott Insulator Quench Dynamics},
  author = {K. W. Mahmud and L. Jiang and P. R. Johnson and E. Tiesinga},
  journal= {arXiv preprint arXiv:1401.6648},
  year   = {2014}
}

Comments

7 pages including Supplementary Material, 5 figures

R2 v1 2026-06-22T02:54:57.277Z