Extended Ashkin-Teller transition in two coupled frustrated Haldane chains
Abstract
We report an extremely rich ground state phase diagram of two spin-1 Haldane chains frustrated with a three-site exchange and coupled by the antiferromagnetic Heisenberg interaction on a zig-zag ladder. A particular feature of the phase diagram is the extended quantum phase transition in the Ashkin-Teller universality class that separates the plaquette phase, which spontaneously breaks translation symmetry, and the uniform disordered phase. The former is connected to the Haldane phase, stabilized by large inter-chain coupling, via the topological Gaussian transition. Upon decreasing the inter-chain interactions, this intermediate disorder phase vanishes, giving place to a dimerized phase separated from the plaquette phase on one side via a non-magnetic Ising transition and from the Haldane phase on the other side by a topological weak first-order transition. Finally, in the limit of two decoupled chains, we recover a quantum critical point that corresponds to two copies of the Wess-Zumino-Witten criticality with a total central charge .
Cite
@article{arxiv.2602.23187,
title = {Extended Ashkin-Teller transition in two coupled frustrated Haldane chains},
author = {Bowy M. La Rivière and Natalia Chepiga},
journal= {arXiv preprint arXiv:2602.23187},
year = {2026}
}
Comments
14 pages, 16 figures (6 appendices)