English

Study of $qqq\bar{q}Q$ pentaquark system in the Chiral Quark Model

High Energy Physics - Phenomenology 2021-03-31 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

With the discovery of some hidden-charm pentaquark resonances by the LHCb Collaboration, investigations of pentaquark states containing heavy quarks have aroused the interest of theorists. We study herein qqqqˉQqqq\bar{q}Q (q=uq = u or dd, Q=cQ=c or bb) pentaquark system, in the framework of the chiral quark model. In consequence, some charmed and bottomed pentaquarks are considered to exist by five-body dynamical calculations. In the charm sector, Σcπ(IJP=012)\Sigma_c\pi(IJ^P=0\frac{1}{2}^-) and Σcπ(IJP=032)\Sigma_c^*\pi(IJ^P=0\frac{3}{2}^-) are possible candidates of Λc(2595)\Lambda_c(2595) and Λc(2625)\Lambda_c(2625), respectively. Besides, two high-spin states, Σcρ(IJP=052)\Sigma_c^*\rho(IJ^P=0\frac{5}{2}^-) and ΔD(IJP=152)\Delta D^*(IJ^P=1\frac{5}{2}^-), are also found in the energy region of 3.23.33.2 \sim 3.3 GeV. In the bottom sector, Σbπ(IJP=012)\Sigma_b\pi(IJ^P=0\frac{1}{2}^-), Σbπ(IJP=032)\Sigma_b^*\pi(IJ^P=0\frac{3}{2}^-) could be candidates of Λb(5912)\Lambda_b(5912) and Λb(5920)\Lambda_b(5920), respectively. And Σbρ(IJP=052)\Sigma_b^*\rho(IJ^P=0\frac{5}{2}^-) and ΔB(IJP=152)\Delta B^*(IJ^P=1\frac{5}{2}^-) are found in the energy region of 6.56.66.5 \sim 6.6 GeV. Σc()π\Sigma_c^{(*)}\pi and Σb()π\Sigma_b^{(*)}\pi are expected as compact states, while Σcρ\Sigma_c^*\rho, Σbρ\Sigma_b^*\rho, ΔD\Delta D^* and ΔB\Delta B^* are expected as molecular states.

Keywords

Cite

@article{arxiv.2012.02017,
  title  = {Study of $qqq\bar{q}Q$ pentaquark system in the Chiral Quark Model},
  author = {Qi Zhang and Xiao-Huang Hu and Bing-Ran He and Jia-Lun Ping},
  journal= {arXiv preprint arXiv:2012.02017},
  year   = {2021}
}

Comments

11 pages, 1 figure