Exotic Gapless Mott Insulators of Bosons on Multi-Leg Ladders
Abstract
We present evidence for an exotic gapless insulating phase of hard-core bosons on multi-leg ladders with a density commensurate with the number of legs. In particular, we study in detail a model of bosons moving with direct hopping and frustrating ring exchange on a 3-leg ladder at filling. For sufficiently large ring exchange, the system is insulating along the ladder but has two gapless modes and power law transverse density correlations at incommensurate wave vectors. We propose a determinantal wave function for this phase and find excellent comparison between variational Monte Carlo and density matrix renormalization group calculations on the model Hamiltonian, thus providing strong evidence for the existence of this exotic phase. Finally, we discuss extensions of our results to other -leg systems and to -layer two-dimensional structures.
Keywords
Cite
@article{arxiv.1008.4105,
title = {Exotic Gapless Mott Insulators of Bosons on Multi-Leg Ladders},
author = {Matthew S. Block and Ryan V. Mishmash and Ribhu K. Kaul and D. N. Sheng and Olexei I. Motrunich and Matthew P. A. Fisher},
journal= {arXiv preprint arXiv:1008.4105},
year = {2011}
}
Comments
5 pages, 4 figures; v3 is the print version; supplemental material attached