English

Heavy baryon spectrum with chiral multiplets of scalar and vector diquarks

High Energy Physics - Phenomenology 2021-09-15 v1 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory

Abstract

Chiral effective theory of scalar and vector diquarks is formulated according to the linear sigma model. The main application is to describe the ground and excited states of singly heavy baryons with a charm or bottom quark. Applying the potential quark model between the diquark and the heavy quark (Q=c,bQ=c, b), we construct a heavy-quark--diquark model. The spectra of the positive- and negative-parity states of ΛQ\Lambda_Q, ΣQ\Sigma_Q, ΞQ()\Xi^{(')}_Q and ΩQ\Omega_Q are obtained. The masses and interaction parameters of the effective theory are fixed partly from the lattice QCD data and also from fitting low-lying heavy baryon masses. We find that the negative parity excited states of ΞQ\Xi_Q (flavor 3ˉ\bar{\bf 3}) are different from those of ΛQ\Lambda_Q, because of the inverse hierarchy of the pseudoscalar diquark. On the other hand, ΣQ,ΞQ\Sigma_Q, \Xi'_Q and ΩQ\Omega_Q (flavor 6{\bf 6}) baryons have similar spectra. We compare our results of the heavy-quark--diquark model with experimental data as well as the quark model.

Keywords

Cite

@article{arxiv.2105.09087,
  title  = {Heavy baryon spectrum with chiral multiplets of scalar and vector diquarks},
  author = {Yonghee Kim and Yan-Rui Liu and Makoto Oka and Kei Suzuki},
  journal= {arXiv preprint arXiv:2105.09087},
  year   = {2021}
}

Comments

19 pages, 10 figures