Phase Structure and Compactness
Abstract
In order to study the influence of compactness on low-energy properties, we compare the phase structures of the compact and non-compact two-dimensional multi-frequency sine-Gordon models. It is shown that the high-energy scaling of the compact and non-compact models coincides, but their low-energy behaviors differ. The critical frequency at which the sine-Gordon model undergoes a topological phase transition is found to be unaffected by the compactness of the field since it is determined by high-energy scaling laws. However, the compact two-frequency sine-Gordon model has first and second order phase transitions determined by the low-energy scaling: we show that these are absent in the non-compact model.
Cite
@article{arxiv.1007.5182,
title = {Phase Structure and Compactness},
author = {I. Nandori and S. Nagy and K. Sailer and A. Trombettoni},
journal= {arXiv preprint arXiv:1007.5182},
year = {2014}
}
Comments
21 pages, 5 figures, minor changes, final version, accepted for publication in JHEP