On the Deformation Parameter in SLq(2) Models of the Elementary Particles
Abstract
When the fundamental invariant of is expressed as \epsilon_q = (\matrix{0 & \alpha_2 \cr -\alpha_1 & 0}), then the deformation parameter, , defining the knot algebra is . We consider models in which the elementary particles carry more than one kind of charge with running coupling constants, and , having different energy dependence and belonging to different gauge groups. Let these coupling constants be normalized to agree with experiment at hadronic energies and written as and . Then . If is an electroweak coupling and is a gluon coupling, will increase with energy. In previous discussions of it has been assumed that . If this condition is maintained, then . If the elementary particle is like a Schwinger dyon and therefore the source of magnetic as well as electric charge, is the Dirac condition for magnetic charge.
Keywords
Cite
@article{arxiv.1108.0438,
title = {On the Deformation Parameter in SLq(2) Models of the Elementary Particles},
author = {Robert J. Finkelstein},
journal= {arXiv preprint arXiv:1108.0438},
year = {2011}
}
Comments
12 Pages, LaTeX2e