English

Electromagnetic and Axial-Vector Form Factors of the Quarks and Nucleon

High Energy Physics - Phenomenology 2017-11-03 v1

Abstract

In light of the improved precision of the experimental measurements and enormous theoretical progress, the nucleon form factors have been evaluated with an aim to understand how the static properties and dynamical behavior of nucleons emerge from the theory of strong interactions between quarks. We have analysed the vector and axial-vector nucleon form factors (GE,Mp,n(Q2)G^{p,n}_{E,M}(Q^2) and GAp,n(Q2)G^{p,n}_{A}(Q^2)) using the spin observables in the chiral constituent quark model (χ\chiCQM) which has made a significant contribution to the unraveling of the internal structure of the nucleon in the nonperturbative regime. We have also presented a comprehensive analysis of the flavor decomposition of the form factors (GEq(Q2)G^{q}_{E}(Q^2), GMq(Q2)G^{q}_{M}(Q^2) and GAq(Q2)G^{q}_{A}(Q^2)for q=u,d,sq=u,d,s) within the framework of χ\chiCQM with emphasis on the extraction of the strangeness form factors which are fundamental to determine the spin structure and test the chiral symmetry breaking effects in the nucleon. The Q2Q^2 dependence of the vector and axial-vector form factors of the nucleon has been studied using the conventional dipole form of parametrization. The results are in agreement with the available experimental data.

Keywords

Cite

@article{arxiv.1711.00729,
  title  = {Electromagnetic and Axial-Vector Form Factors of the Quarks and Nucleon},
  author = {Harleen Dahiya and Monika Randhawa},
  journal= {arXiv preprint arXiv:1711.00729},
  year   = {2017}
}

Comments

26 pages, 11 figures. arXiv admin note: text overlap with arXiv:1606.06441, arXiv:1505.03304