paper

Long-distance properties of frozen U(1) Higgs and axially U(1)-gauged four-Fermi models in dimensions

arXiv:hep-th/9308064

Abstract

We study the long-distance relevance of vortices (instantons) in an -component axially U(1)-gauged four-Fermi theory in dimensions, in which a naive use of expansion predicts the dynamical Higgs phenomenon. Its general effective lagrangian is found to be a frozen U(1) Higgs model with the gauge-field mass term proportional to an anomaly parameter (). The dual-transformed versions of the effective theory are represented by sine-Gordon systems and recursion-relation analyses are performed. The results suggest that in the gauge-invariant scheme () vortices are always relevant at long distances, while in non-invariant schemes () there exists a critical above which the long-distance behavior is dominated by a free massless scalar field.

43 pages, Latex file (16 figures not included in the text) YITP/U-93-15