arXiv:2201.10338·v1·High Energy Physics — Phenomenology
Nucleon Electromagnetic and Axial Form Factors in a Light-front Constituent Quark Model
W. R. B. de Araújo (Secretaria de Educação do Estado de São Paulo, Brazil)🇧🇷 · E. F.Suisso (Instituto Nacional de Propriedade Industrial, INPI, RJ) · J. P. B. C. de Melo (Laboratório de Física Teórica e Computacional - LFTC, Universidade Cruzeiro do Sul / Universidade Cidade de São Paulo, São Paulo, Brazil)🇧🇷 · T. Frederico (Instituto Tecnológico de Aeronáutica, DCTA, São Joé dos Campos, SP, Brazil)🇧🇷 · Kazuo Tsushima (Laboratório de Física Teórica e Computacional - LFTC, Universidade Cruzeiro do Sul / Universidade Cidade de São Paulo, São Paulo, Brazil)🇧🇷
Abstract
In the present work we study the effect of the scalar spin coupling of constituent quarks on the nucleon electroweak properties by introducing a valence light-front wave function with two momentum scales. By comparing the results obtained with the one scale and two scale wave function models, we have found that the last one has shown a reasonable description of the static observables and ratio in which the position of the zero appears around 10~[GeV/c] or for higher squared momentum transfers. We have also shown results for the axial-vector coupling and the nucleon axial-vector form factor. The best result for was obtained when the parameters of the nucleon wave function model were such that the experimental value of the neutron magnetic moment was described.
Comments: Pos. style (Latex), 4 eps figures