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Remarks on the Strong Coupling Constants in Heavy Hadron Chiral Lagrangians

High Energy Physics - Phenomenology 2009-10-30 v1

Abstract

In the heavy quark limit, there are three independent strong axial coupling constants in chiral Lagrangians for ground-state heavy hadrons: g in the meson sector, and g_1, g_2 in the baryon sector. The coupling g_2 is extracted from recent CLEO measurements of ΣcΛcπ\Sigma_c^*\to\Lambda_c\pi to be g2=0.57±0.10|g_2|=0.57\pm 0.10, in agreement with the nonrelativistic quark model expectation but in 2σ2\sigma deviation from the large-N_c argument. The parameter g_1 cannot be determined directly from strong decays of heavy baryons. Nevertheless, some information of g_1 can be learned from the radiative decay Ξc0Ξc0γ\Xi_c^{'*0}\to\Xi_c^0\gamma, which is prohibited at tree level by SU(3) symmetry but induced by chiral loops. A measurement of Γ(Ξc0Ξc0γ)\Gamma(\Xi_c^{'*0}\to\Xi_c^0\gamma) will yield two possible solutions for g_1. Assuming the validity of the quark model relations among different coupling constants, the experimental value of g_2 implies that g=0.70±0.12|g|=0.70\pm 0.12 and g1=0.93±0.16|g_1|=0.93\pm 0.16.

Keywords

Cite

@article{arxiv.hep-ph/9701234,
  title  = {Remarks on the Strong Coupling Constants in Heavy Hadron Chiral Lagrangians},
  author = {Hai-Yang Cheng},
  journal= {arXiv preprint arXiv:hep-ph/9701234},
  year   = {2009}
}

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9 pages