A model realisation of the Jaffe-Wilczek correlation for pentaquarks
Abstract
We discuss a realisation of the pentaquark structure proposed by Jaffe and Wilczek within a simple quark model with colour-spin contact interactions and coloured harmonic confinement, which accurately describes the splitting. In this model spatially compact diquarks are formed in the pentaquark but no such compact object exists in the nucleon. The colour-spin attraction brings the Jaffe-Wilczek-like state down to a low mass, compatible with the experimental observation and below that of the naive ground state with all -waves. We find, however, that although these trends are maintained, the extreme effects observed do not survive the required ``smearing'' of the delta function contact interaction. We also demonstrate the weakness of the ``schematic'' approximation when applied to a system containing a -wave. An estimate of the anti-charmed pentaquark mass is made which is in line with the Jaffe-Wilczek prediction and significantly less than the value reported by the H1 collaboration.
Cite
@article{arxiv.hep-ph/0403235,
title = {A model realisation of the Jaffe-Wilczek correlation for pentaquarks},
author = {J. J. Dudek},
journal= {arXiv preprint arXiv:hep-ph/0403235},
year = {2015}
}
Comments
10 pages, uses psfrag