Dynamical fragmentation of flux tubes in the Friedberg-Lee model
Abstract
We present two novel dynamical features of flux tubes in the Friedberg-Lee model. First the fusion of two (anti-)parallel flux tubes, where we extract a string-string interaction potential which has a qualitative similarity to the nucleon-nucleon potential in the Friedberg-Lee model obtained by Koepf et al. Furthermore we show the dynamical breakup of flux tubes via particle production and the disintegration into mesons. We find, as a shortcoming of the present realization of the model, that the full dynamical transport approach presented in a previous publication fails to provide the disintegration mechanism in the semiclassical limit. Therefore, in addition, we present here a molecular dynamical approach for the motion of the quarks and show, as a first application, the space-time development of the quarks and their mean-fields for Lund-type string fragmentation processes.
Keywords
Cite
@article{arxiv.hep-ph/9701363,
title = {Dynamical fragmentation of flux tubes in the Friedberg-Lee model},
author = {S. Loh and C. Greiner and U. Mosel and M. H. Thoma},
journal= {arXiv preprint arXiv:hep-ph/9701363},
year = {2009}
}
Comments
37 pages, 10 PostScript figures, Latex