English

Hadron spectroscopy using the light-front holographic Schr\"odinger equation and the 't Hooft equation

High Energy Physics - Phenomenology 2021-10-20 v2

Abstract

Light-front holographic QCD provides a successful first approximation to hadron spectroscopy in the chiral limit of (3+1)(3+1)-dim light-front QCD, where a holographic Schr\"odinger-like equation, with an emerging confining scale, κ\kappa, governs confinement in the transverse direction. In its supersymmetric formulation, light-front holography predicts that each baryon has two superpartners: a meson and a tetraquark, with their degenerate masses being generated by the same scale, κ\kappa. In nature, this mass degeneracy is lifted by chiral symmetry breaking and longitudinal confinement. In this paper, we show that the latter can be successfully captured by the 't Hooft equation of (1+1)(1+1)-dim, large NcN_c, QCD. Together, the holographic Schr\"odinger equation and the 't Hooft equation, provide a good global description of the data across the full hadron spectrum with a universal κ\kappa.

Keywords

Cite

@article{arxiv.2108.03482,
  title  = {Hadron spectroscopy using the light-front holographic Schr\"odinger equation and the 't Hooft equation},
  author = {Mohammad Ahmady and Satvir Kaur and Sugee Lee MacKay and Chandan Mondal and Ruben Sandapen},
  journal= {arXiv preprint arXiv:2108.03482},
  year   = {2021}
}

Comments

28 pages, 10 figures, 8 tables; added hadron spectroscopy with an alternative longitudinal potential, expanded discussion, version to appear in PRD