English

Structure of Heavy Mesons in the Light-Front Quark Model

High Energy Physics - Phenomenology 2024-06-24 v2 Nuclear Theory

Abstract

We investigate the structure of ground-state heavy mesons within the light-front quark model, utilizing wave functions derived from the Single Gaussian Ansatz (SGA) and the Gaussian Expansion Method (GEM). By performing a χ2\chi^2 fit to static properties such as mass spectra and decay constants, we determine the model parameters for each approach. We then compare the impacts of both methods on the light-front wave functions and structural observables. Our analysis reveals significant differences in the distribution amplitudes (DAs) ϕ2;M(x)\phi_{2;M}(x) near the endpoints, with GEM showing enhanced amplitudes and correct asymptotic behavior ϕ2;M(x1)(1x)\phi_{2;M}(x \to 1) \propto (1-x), consistent with perturbative QCD. This endpoint behavior is linked to the short-range (high-momentum) wave function governed by color Coulomb interaction and relativistic kinematics. GEM accurately reproduces a power-law damping ψ0(k)1/k2\psi_0(k \to \infty) \propto 1/k_\perp^2, aligning with perturbative QCD predictions. Furthermore, the electromagnetic form factors of pseudoscalar mesons in the low-Q2Q^2 region fall off faster with GEM than with SGA. Overall, while both methods adequately describe static properties, GEM provides a more accurate description of structural properties, being more sensitive to details and asymptotic behaviors.

Keywords

Cite

@article{arxiv.2401.07933,
  title  = {Structure of Heavy Mesons in the Light-Front Quark Model},
  author = {Ahmad Jafar Arifi and Lucas Happ and Shuhei Ohno and Makoto Oka},
  journal= {arXiv preprint arXiv:2401.07933},
  year   = {2024}
}

Comments

17 pages, 11 figures, and 6 tables. We add more results and discussion