2,250 research outputs found

    X(3915) and X(4350) as new members in P-wave charmonium family

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    The analysis of the mass spectrum and the calculation of the strong decay of P-wave charmonium states strongly support to explain the newly observed X(3915) and X(4350) as new members in P-wave charmonium family, i.e., Ο‡c0β€²\chi_{c0}^\prime for X(3915) and Ο‡c2β€²β€²\chi_{c2}^{\prime\prime} for X(4350). Under the P-wave charmonium assignment to X(3915) and X(4350), the JPCJ^{PC} quantum numbers of X(3915) and X(4350) must be 0++0^{++} and 2++2^{++} respectively, which provide the important criterion to test P-wave charmonium explanation for X(3915) and X(4350) proposed by this letter. The decay behavior of the remaining two P-wave charmonium states with the second radial excitation is predicted, and experimental search for them is suggested.Comment: 4 pages, 2 figures, 2 tables. More references and discussions added, typos corrected. Accepted for publication in Phys. Rev. Lett

    B_{s1}(5830) and B_{s2}^*(5840)

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    In this paper we investigate the strong decays of the two newly observed bottom-strange mesons Bs1(5830)B_{s1}(5830) and Bs2βˆ—(5840)B_{s2}^*(5840) in the framework of the quark pair creation model. The two-body strong decay widths of Bs1(5830)0β†’Bβˆ—+Kβˆ’B_{s1}(5830)^0\to B^{*+}K^- and Bs2βˆ—(5840)0β†’B+Kβˆ’,Bβˆ—+Kβˆ’B_{s2}^*(5840)^0\to B^+K^-, B^{*+}K^- are calculated by considering Bs1(5830)B_{s1}(5830) to be a mixture between ∣1P1>|^1P_1> and ∣3P1>|^3P_1> states, and Bs2βˆ—(5840)B_{s2}^*(5840) to be a ∣3P2>|^3P_2> state. The double pion decay of Bs1(5830)B_{s1}(5830) and Bs2βˆ—(5840)B_{s2}^*(5840) is supposed to occur via the intermediate state Οƒ\sigma and f0(980)f_0(980). Although the double pion decay widths of Bs1(5830)B_{s1}(5830) and Bs2βˆ—(5840)B_{s2}^*(5840) are smaller than the two-body strong decay widths of Bs1(5830)B_{s1}(5830) and Bs2βˆ—(5840)B_{s2}^*(5840), one suggests future experiments to search the double pion decays of Bs1(5830)B_{s1}(5830) and Bs2βˆ—(5840)B_{s2}^*(5840) due to their sizable decay widths.Comment: 9 pages, 8 figures and 6 tables. More references and discussions added, typos corrected, some descriptions changed. Publication version in PR

    Analysis of the D-wave Ξ£\Sigma-type charmed baryon states with the QCD sum rules

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    We construct the Ξ£\Sigma-type currents to investigate the D-wave charmed baryon states with the QCD sum rules systematically. The predicted masses M=3.35βˆ’0.18+0.13 GeVM=3.35^{+0.13}_{-0.18}\,\rm{GeV} (3.33βˆ’0.16+0.13 GeV3.33^{+0.13}_{-0.16}\,\rm{GeV}), 3.34βˆ’0.18+0.14 GeV3.34^{+0.14}_{-0.18}\,\rm{GeV} (3.35βˆ’0.16+0.13 GeV3.35^{+0.13}_{-0.16}\,\rm{GeV}) and 3.35βˆ’0.13+0.12 GeV3.35^{+0.12}_{-0.13}\,\rm{GeV} (3.35βˆ’0.14+0.12 GeV3.35^{+0.12}_{-0.14}\,\rm{GeV}) for the Ξ©c(0,2,12+)\Omega_c(0,2,{\frac{1}{2}}^+), Ξ©c(0,2,32+)\Omega_c(0,2,{\frac{3}{2}}^+) and Ξ©c(0,2,52+)\Omega_c(0,2,{\frac{5}{2}}^+) states are in excellent agreement with the experimental data 3327.1\pm1.2 \mbox{ MeV} from the LHCb collaboration, and support assigning the Ξ©c(3327)\Omega_c(3327) to be the Ξ£\Sigma-type D-wave Ξ©c\Omega_c state with the spin-parity JP=12+J^P={\frac{1}{2}}^+, 32+{\frac{3}{2}}^+ or 52+{\frac{5}{2}}^+.Comment: 26 pages, 13 figure
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