Dynamical Quasicondensation of Hard-Core Bosons at Finite Momenta
Abstract
Long-range order in quantum many-body systems is usually associated with equilibrium situations. Here, we experimentally investigate the quasicondensation of strongly-interacting bosons at finite momenta in a far-from-equilibrium case. We prepare an inhomogeneous initial state consisting of one-dimensional Mott insulators in the center of otherwise empty one-dimensional chains in an optical lattice with a lattice constant . After suddenly quenching the trapping potential to zero, we observe the onset of coherence in spontaneously forming quasicondensates in the lattice. Remarkably, the emerging phase order differs from the ground-state order and is characterized by peaks at finite momenta in the momentum distribution function.
Keywords
Cite
@article{arxiv.1505.05150,
title = {Dynamical Quasicondensation of Hard-Core Bosons at Finite Momenta},
author = {L. Vidmar and J. P. Ronzheimer and M. Schreiber and S. Braun and S. S. Hodgman and S. Langer and F. Heidrich-Meisner and I. Bloch and U. Schneider},
journal= {arXiv preprint arXiv:1505.05150},
year = {2015}
}
Comments
See also Viewpoint: Emerging Quantum Order in an Expanding Gas, Physics 8, 99 (2015)