Abstract

We perform a systematical investigation of the strong decay properties of the low-lying $1P$- and $2D$-wave doubly charmed baryons with the $^3P_0$ quark pair creation model. The main predictions include: (i) in the $\Xi_{cc}$ and $\Omega_{cc}$ family, the $1P~\rho$ mode excitations with $J^P=1/2^-$ and $3/2^-$ should be the fairly narrow states. (ii) For the $1P~\lambda$ mode excitations, $|^2P_{\lambda}\frac{3}{2}^-\rangle$ and $|^4P_{\lambda}\frac{3}{2}^-\rangle$ have a width of $\Gamma\sim150$ MeV, and mainly decay into the $J^P=3/2^+$ ground state. Meanwhile, $|^2P_{\lambda}\frac{1}{2}^-\rangle$ and $|^4P_{\lambda}\frac{5}{2}^-\rangle$ are the narrow states with a width of $\Gamma\sim40$ MeV, and mainly decay into the ground state with $J^P=1/2^+$. (iii) The $2D_{\rho\rho}$ states mainly decay via emitting a heavy-light meson if their masses are above the threshold of $\Lambda_cD$ or $\Xi_cD$, respectively. Their strong decay widths are sensitive to the masses and can reach several tens MeV. (iv) The $2D_{\lambda\lambda}$ states may be broad states with a width of $\Gamma>100$ MeV. It should be emphasized that the states with $J^P=3/2^+$ and $5/2^+$ mainly decay into the ground state with $J^P=3/2^+$ plus a light-flavor meson, while the states with $J^P=1/2^+$ and $7/2^+$ mainly decay into the ground state with $J^P=1/2^+$ plus a light-flavor meson.

Highlights

  • Fifteen years ago, the SELEX Collaboration announced a doubly charmed baryon Ξþcc with mass 3519 Æ 1 MeV [1]

  • The main predictions include: (i) in the Ξcc and Ωcc family, the 1P ρ mode excitations with JP 1⁄4 1=2− and 3=2− should be the fairly narrow states, while, for the 1P λ mode excitations, they are most likely to be moderate states with a width of Γ ∼ 100 MeV. (ii) The 2Dρρ states mainly decay via emitting a heavy-light meson and the decay widths can reach several tens MeV if their masses are above the threshold of ΛcD or ΞcD, respectively

  • We focus on the strong decays of the 1Pλ states

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Summary

INTRODUCTION

The SELEX Collaboration announced a doubly charmed baryon Ξþcc with mass 3519 Æ 1 MeV [1]. In our previous work [17], we first systematically investigated the both strong and radiative transitions of the low-lying 1P-wave doubly heavy baryons with chiral and constituent quark model. We shall perform a systematic analysis of the two-body Okubo-Zweig-Iizuka (OZI) allowed strong decays of the 1P and 2D doubly charmed states with the quark pair creation (QPC) model, which may provide more information of their inner structures. For the low-lying 1P and 2D doubly charmed baryons, their masses are large enough to allow the decay channels containing a heavy-light flavor meson. For further understanding the strong decays of the doubly charmed baryons, it is necessary to make a comparison of the theoretical predictions with QPC model to the results with the chiral quark model [17]. For the strength of the quark pair creation from the vacuum, we take the same value as in Ref. [49], γ 1⁄4 6.9p5.ffiffiFor the strange quark pair sscreation, we use γss 1⁄4 γ= 3 [60]

CALCULATIONS AND RESULTS
The P-wave doubly charmed states
The D-wave doubly charmed states
SUMMARY
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