arXiv:nucl-th/0101004·v1·Nuclear Theory
The u-d quark mass difference and nuclear charge symmetry breaking
Abstract
The group theoretical analysis of the Coleman-Glashow tadpole picture of "meson-mixing" is quantitatively reproduced by the u-d constituent quark mass difference in quantum loop calculations of the self-energies of mesons. This demonstration that the Coleman-Glashow scales can be directly calculated from the constituent quark mass difference finishes the link between charge symmetry breaking in low energy nuclear physics and the quark mass difference in particle physics.
Comments: Invited talk presented at the XVIIth European Conference of Few-Body Problems in Physics, Evora, Portugal, Sept 2000, to be published in Nuclear Physics A, 9 pages