Quantum Phase Transitions of Frustrated Heisenberg Antiferromagnets: a Comprehensive Renormalization Approach
Other Condensed Matter
2007-05-23 v2
Abstract
We develop a novel renormalization approach for frustrated quantum antiferromagnets. It is designed to consistently treat spin-wave interactions all over the magnetic Brillouin zone, including high-energy modes in outer regions as well as low energy modes in the center. Focusing on the paradigmatic - model, we find a unifying description of the second-order transition between the N\'eel phase and the paramagnetic phase and the first-order transition between the N\'eel phase and the columnar phase. Our approach provides explicit results for the renormalized values of the spin stiffness and spin-wave velocity characterizing the low-energy magnons in the N\'eel phase.
Cite
@article{arxiv.cond-mat/0503076,
title = {Quantum Phase Transitions of Frustrated Heisenberg Antiferromagnets: a Comprehensive Renormalization Approach},
author = {Frank Krüger and Stefan Scheidl},
journal= {arXiv preprint arXiv:cond-mat/0503076},
year = {2007}
}
Comments
4 pages, 3 figures, errors in references removed