English

Running Coupling and Running Quark Mass Effects on the Elastic Form Factors of Nucleons

High Energy Physics - Phenomenology 2024-04-22 v2 High Energy Physics - Theory

Abstract

We study the elastic electric and magnetic form factors of the proton, neutron and the charged roper resonance (GEpG_E^p, GMpG_M^p, GEnG_E^n, GMnG_M^n, GERG_E^R and GMRG_M^R) systematically in a constituent quark model. Three ingredients are crucial in this study: i) the mixing between the pure S-wave and other components which produces a nonzero neutron electric form factor. ii) a running coupling constant that soften the form factors. iii) the running quark mass function, Mq(p2)M_q(p^2), which is responsible for the decreasing of the μpGEp(Q2)/GMp(Q2)\mu_p G_E^p(Q^2)/G_M^p(Q^2) as Q2Q^2 increases. The produced elastic form factors of the proton and neutron match the corresponding observed values fairly well. Our study shows that μpGEp(Q2)/GMp(Q2)Mq(Q2/9)/Mq(0)\mu_p G_E^p(Q^2)/G_M^p(Q^2) \approx M_q(Q^2/9)/M_q(0) upto Q24 GeV2Q^2 \approx 4 \text{ GeV}^2. We give predictions on the elastic form factors of the roper resonance, the electric charge and the magnetic momentum radius ratios of the roper resonance to the proton are rER/rEprMR/rMp1.5r^R_{E}/r^p_{E} \approx r^R_{M}/r^p_{M} \approx 1.5.

Keywords

Cite

@article{arxiv.2403.19343,
  title  = {Running Coupling and Running Quark Mass Effects on the Elastic Form Factors of Nucleons},
  author = {Bao-Yi Yang and Hui-Hua Zhong and Muyang Chen},
  journal= {arXiv preprint arXiv:2403.19343},
  year   = {2024}
}

Comments

13 pages, 8 figures