Transition between critical antiferromagnetic phases in the - spin chain
arXiv:2411.08095
Abstract
The - spin chain is one of the canonical models of quantum magnetism, and has long been known to host a critical antiferromagnetic phase with power-law decay of spin correlations. We show in this Letter that there are, in fact, \textit{two} distinct critical antiferromagnetic phases, where the roles of the local dimer field and its dual field are interchanged: the `Affleck-Haldane' phase near the Heisenberg point , where the dimer field that parametrises local singlet order is gapless and part of a joint Néel-singlet order parameter; and the `Zirnbauer' phase which appears at sufficiently large ferromagnetic , where the dimer field is gapped out and its \textit{dual} field -- the instanton density of the Néel field -- is critical instead. The phases are so-named because each realises one of the competing pictures for how the non-linear sigma model with a topological theta term renormalises to the Wess-Zumino-Witten model. We support these predictions with density matrix renormalisation group calculations.
5 pages, 3 figures