Ground state mass spectrum for scalar diquarks with Bethe-Salpeter equation
Abstract
In this article, we study the structures of the pseudoscalar mesons , and the scalar diquarks , , in the framework of the coupled rainbow Schwinger-Dyson equation and ladder Bethe-Salpeter equation with the confining effective potential. The , , quarks have small current masses, and the renormalization is very large, the mass poles in the timelike region are absent which implements confinement naturally. The Bethe-Salpeter wavefunctions of the pseudoscalar mesons , and the scalar diquarks , , have the same type (Gaussian type) momentum dependence, center around zero momentum and extend to the energy scale about which happen to be the energy scale for the chiral symmetry breaking, the strong interactions in the infrared region result in bound (or quasi-bound) states. The numerical results for the masses and decay constants of the , mesons can reproduce the experimental values, the ground state masses of the scalar diquarks , , are consistent with the existing theoretical calculations. We suggest a new Lagrangian which may explain the uncertainty of the masses of the scalar diquarks .
Keywords
Cite
@article{arxiv.hep-ph/0506035,
title = {Ground state mass spectrum for scalar diquarks with Bethe-Salpeter equation},
author = {Z. G. Wang and S. L. Wan and W. M. Yang},
journal= {arXiv preprint arXiv:hep-ph/0506035},
year = {2016}
}
Comments
13 pages, 2 figures, third version, to appear in Commun. Theor. Phys