Do Quarks Really Form Diquark Clusters in the Nucleon?
Abstract
A gauge invariant method for the investigation of scalar diquark clustering in the nucleon ground state is presented. The method focuses on a comparison of quark distributions in the nucleon with those in the baryon resonance. Recent lattice QCD calculations of these quark distribution radii are analyzed in a search for evidence of scalar diquark clustering. The analysis indicates the lattice results describe the negative squared charge radius of the neutron with little resort to hyperfine clustering between --quark pairs. This result contrasts both quark-diquark and nonrelativistic quark models where hyperfine attraction between and quarks in the nucleon is argued to play a significant role. Comparison of light quark distributions in and indicate only a small reduction of the scalar diquark distribution radius relative to the vector diquark distribution. Current lattice QCD determinations of baryon charge distributions do not support the concept of substantial - scalar diquark clustering as an appropriate description of the internal structure of the nucleon.
Cite
@article{arxiv.hep-ph/9302266,
title = {Do Quarks Really Form Diquark Clusters in the Nucleon?},
author = {Derek B. Leinweber},
journal= {arXiv preprint arXiv:hep-ph/9302266},
year = {2009}
}
Comments
RevTeX 3.0 manuscript, 15 pages. UU-file is a single PostScript file of the manuscript including figures. U. MD PP #93-002