EMBEDDED DEFECTS AND SYMMETRY BREAKING IN FLIPPED $SU(5)$
Abstract
We explicitly show the analogy between the symmetry breaking scheme for the GUT flipped with that of the Weinberg-Salam theory of electroweak interactions. This allows us to construct the embedded defect spectrum of the theory flipped . We find that the spectrum consists of twelve gauge-equivalent unstable Lepto-quark strings, which are analogous to W-strings in electroweak theory, and another string that is gauge inequivalent to the Lepto-quark strings, which we call the `V-string'. The V-string is analogous to the Z-string of electroweak theory, correspondingly admitting a stable semilocal limit. Using data on the running coupling constants we indicate that in the non-supersymmetric case V-strings can be stable for part of the physically-viable parameter space. Cosmological consequences are briefly discussed.
Cite
@article{arxiv.hep-ph/9504411,
title = {EMBEDDED DEFECTS AND SYMMETRY BREAKING IN FLIPPED $SU(5)$},
author = {Anne-Christine Davis and Nathan F. Lepora},
journal= {arXiv preprint arXiv:hep-ph/9504411},
year = {2010}
}
Comments
21 pages, LATEX