Symmetry-protected Bose-Einstein condensation of interacting hardcore Bosons
Abstract
We introduce a mechanism stabilizing a one-dimensional quantum many-body phase, characterized by a certain wave vector , from a -modulated coupling to a center site, via the protection of an emergent symmetry. We illustrate this mechanism by constructing the solution of the full quantum many-body problem of hardcore bosons on a wheel geometry, which are known to form a Bose-Einstein condensate. The robustness of the condensate is shown numerically by adding nearest-neighbor interactions to the wheel Hamiltonian. We identify the energy scale that controls the protection of the emergent symmetry. We discuss further applications such as geometrically inducing finite-momentum condensates. Since our solution strategy is based on a generic mapping from a wheel geometry to a projected ladder, our analysis can be applied to various related problems with extensively scaling coordination numbers.
Keywords
Cite
@article{arxiv.2110.15770,
title = {Symmetry-protected Bose-Einstein condensation of interacting hardcore Bosons},
author = {R. H. Wilke and T. Köhler and F. A. Palm and S. Paeckel},
journal= {arXiv preprint arXiv:2110.15770},
year = {2023}
}