Topological Excitations in Compact Maxwell-Chern-Simons Theory
High Energy Physics - Theory
2009-10-22 v1 Condensed Matter
High Energy Physics - Lattice
Abstract
We construct a lattice model of compact (2+1)-dimensional Maxwell-Chern- Simons theory, starting from its formulation in terms of gauge invariant quantities proposed by Deser and Jackiw. We thereby identify the topological excitations and their interactions. These consist of monopolo- antimonopole pairs bounded by strings carrying both magnetic flux and electric charge. The electric charge renders the Dirac strings observable and endows them with a finite energy per unit length, which results in a linearly confining string tension. Additionally, the strings interact via an imaginary, topological term measuring the (self-) linking number of closed strings.
Cite
@article{arxiv.hep-th/9306073,
title = {Topological Excitations in Compact Maxwell-Chern-Simons Theory},
author = {M. C. Diamantini and P. Sodano and C. A. Trugenberger},
journal= {arXiv preprint arXiv:hep-th/9306073},
year = {2009}
}
Comments
harvmac, CERN-TH. 6906/93, DFUPG 80/93