English

Center of mass motion in bag model

High Energy Physics - Phenomenology 2024-01-09 v2

Abstract

Despite the great success on the mass spectra, the reputation of the bag model has been closely followed by the embarrassment from the center of mass motion. It leads to severe theoretical inconsistencies. For instance, the masses and the decay constants would no longer be independent of the momentum. In this work, we provide a systematical approach to resolve this problem. The meson decay constants as well as the baryon transition form factors can be computed consistently in our framework. Notably, the form factors in the neutron β\beta decays do not depend on any free parameters, and are determined to be F1V=1F^V_1 =1 and F1A=1.31F^A_1 = 1.31 or F1A/F1V=1.31F_1^A/F_1^V= 1.31, which is close the experimental value of F1A/F1V=1.27F^A_1/F^V_1 = 1.27. In addition, we find that B(ΛbΛγ)=(6.8±3.3)×106{\cal B} (\Lambda_b \to \Lambda \gamma) = (6.8 \pm 3.3 ) \times 10^{-6} , which agrees to the experimental value of (7.1±1.7)×106(7.1\pm 1.7)\times 10^{-6}.

Cite

@article{arxiv.2205.08158,
  title  = {Center of mass motion in bag model},
  author = {Chia-Wei Liu and Chao-Qiang Geng},
  journal= {arXiv preprint arXiv:2205.08158},
  year   = {2024}
}

Comments

21 pages, 2 figures