Devil's staircases without particle-hole symmetry
Abstract
We present and analyze spin models with long-range interactions whose ground state features a so-called devil's staircase and where plateaus of the staircase are accessed by varying two-body interactions. This is in contrast to the canonical devil's staircase, for example occurring in the one-dimensional Ising model with long-range interactions, where typically a single-body chemical potential is varied to scan through the plateaus. These systems, moreover, typically feature a particle-hole symmetry which trivially connects the hole part of the staircase (filling fraction ) to its particle part (). Such symmetry is absent in our models and hence the particle sector and the hole sector can be separately controlled, resulting in exotic hybrid staircases.
Cite
@article{arxiv.1707.07931,
title = {Devil's staircases without particle-hole symmetry},
author = {Zhihao Lan and Igor Lesanovsky and Weibin Li},
journal= {arXiv preprint arXiv:1707.07931},
year = {2018}
}
Comments
11 pages, 9 figures; close to published version