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

Published 3 Dec 2020 in hep-ph, hep-ex, and hep-lat | (2012.02017v2)

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 $qqq\bar{q}Q$ ($q = u$ or $d$, $Q=c$ or $b$) 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, $\Sigma_c\pi(IJP=0\frac{1}{2}-)$ and $\Sigma_c*\pi(IJP=0\frac{3}{2}-)$ are possible candidates of $\Lambda_c(2595)$ and $\Lambda_c(2625)$, respectively. Besides, two high-spin states, $\Sigma_c*\rho(IJP=0\frac{5}{2}-)$ and $\Delta D*(IJP=1\frac{5}{2}-)$, are also found in the energy region of $3.2 \sim 3.3$ GeV. In the bottom sector, $\Sigma_b\pi(IJP=0\frac{1}{2}-)$, $\Sigma_b*\pi(IJP=0\frac{3}{2}-)$ could be candidates of $\Lambda_b(5912)$ and $\Lambda_b(5920)$, respectively. And $\Sigma_b*\rho(IJP=0\frac{5}{2}-)$ and $\Delta B*(IJP=1\frac{5}{2}-)$ are found in the energy region of $6.5 \sim 6.6$ GeV. $\Sigma_c{(*)}\pi$ and $\Sigma_b{(*)}\pi$ are expected as compact states, while $\Sigma_c*\rho$, $\Sigma_b*\rho$, $\Delta D*$ and $\Delta B*$ are expected as molecular states.

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