论文标题

紧凑型diquark模型中LHCB隐藏障碍的解释

Interpretation of LHCb Hidden-Charm Pentaquarks within the Compact Diquark Model

论文作者

Ali, Ahmed, Ahmed, Ishtiaq, Aslam, M. Jamil, Parkhomenko, Alexander, Rehman, Abdur

论文摘要

LHCB的合作最近将其对衰减$ J/ψ\的分析进行了更新,p $ s质量谱$λ_b^0 \ to j/ψ\,p \,k^ - $,利用其合并的运行〜1和运行〜2数据。在更新的分析中,观察到了三个狭窄状态,$ p_c(4312)^+$,$ p_c(4440)^+$,和$ p_c(4457)^+$。这些状态的旋转率分配尚不清楚。我们将这些狭窄的共鸣解释为紧凑的隐藏式diquark-diquark-diquark-antiquark pentaquarks。使用有效的汉密尔顿人,根据组成夸克和diquarks,我们计算了完整的$ su(3)_f $ low $ s $ - 和$ p $ - 波$ - 和$ p $ - 波型的Pentaquark质谱,并考虑了主导的旋转旋转,旋转旋转,旋转器,轨道和张力镜的互动。最终的频谱非常丰富,我们可以算出夸克风味的成分,质量和$ j^p $量子数量的五角星。但是,重型夸克对称限制了可观察的状态$λ_b$ -Baryon,以及在其他弱债务$ b $ -baryons,$ξ_b$和$ω_b$的衰减中。此外,估计某些五夸克状态在$ j/ψ\,p $ theshold $λ_b$ -decays(以及$ξ_b$ - 和$ω_b$ -decays中的相应阈值)中。它们通过$ c \ bar c $ nihation灭入浅亨德子或Dilepton对,预计将比观察到的$ p_c $ states狭窄。我们预计他们的发现以及LHC频谱中存在的其他五夸克州,以及在Tera-$ Z $工厂的长期未来。

The LHCb collaboration have recently updated their analysis of the resonant $J/ψ\, p$ mass spectrum in the decay $Λ_b^0 \to J/ψ\, p\, K^-$, making use of their combined Run~1 and Run~2 data. In the updated analysis, three narrow states, $P_c (4312)^+$, $P_c (4440)^+$, and $P_c (4457)^+$, are observed. The spin-parity assignments of these states are not yet known. We interpret these narrow resonances as compact hidden-charm diquark-diquark-antiquark pentaquarks. Using an effective Hamiltonian, based on constituent quarks and diquarks, we calculate the pentaquark mass spectrum for the complete $SU (3)_F$ lowest $S$- and $P$-wave multiplets, taking into account dominant spin-spin, spin-orbit, orbital and tensor interactions. The resulting spectrum is very rich and we work out the quark flavor compositions, masses, and $J^P$ quantum numbers of the pentaquarks. However, heavy quark symmetry restricts the observable states in $Λ_b$-baryon, as well as in the decays of the other weakly-decaying $b$-baryons, $Ξ_b$ and $Ω_b$. In addition, some of the pentaquark states are estimated to lie below the $J/ψ\, p$ threshold in $Λ_b$-decays (and corresponding thresholds in $Ξ_b$- and $Ω_b$-decays). They decay via $c \bar c$ annihilation into light hadrons or a dilepton pair, and are expected to be narrower than the $P_c$-states observed. We anticipate their discovery, as well as of the other pentaquark states present in the spectrum at the LHC, and in the long-term future at a Tera-$Z$ factory.

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