论文标题
双重迷人的baryon衰减$ξ_{cc}^{++} \toξ_c^{(\ prime)+}π^+$在quark模型中
Doubly charmed baryon decays $Ξ_{cc}^{++}\toΞ_c^{(\prime)+}π^+$ in the quark model
论文作者
论文摘要
在这项工作中,我们研究了双重魅力的巴里昂衰减$ξ_{cc}^{++} \toξ_c^{(\ prime)+}π^+$在非相关夸克模型(NRQM)的框架内。可取分的幅度以过渡形式因素表示,而不可分割的幅度出现形式形式的内部$ w $排放是使用当前代数和POL模型评估的,并用Baryonic矩阵元件和轴向元素元件和轴向矢量形式表达。然后使用NRQM计算非扰动参数。它们可以根据巴属波函数的动量积分来表达,而谐波振荡器参数$α_ρ$和$α_λ$对于$ρ$ - 和$λ$ - mmode激发。 $ξ_{cc}^{++} \至ξ^{\ prime+}_cπ^+$相对于$ξ_{cc}^{++}^{++}^{++}^{++}^{++}^{++} \ξ_c^+π^+$可以适用于$ $ qum $ $ nrqm { $α_{ρ_2} $分别处于0.51和0.19的附近,其中$α_{ρ1} $是$α_ρ$参数的$α_ρ$参数,$α_ρ$参数,$ξ_{cc}^{cc}^{++} $和$α___{ρ2} $ for $ a {ρ2} $ for $ $ eC} $} $} {预计衰减不对称为$ -0.78 $和$ -0.89 $,对于$ξ_c^+π^+$和$ξ_c^{\ prime+}π^+$模式,可以在不久的将来进行测试。我们将结果与其他作品进行了比较,并指出,尽管其他一些模型可以容纳比率$ r $,但它们倾向于将分支的分数分为$ξ_{cc}^{++} \ to Expe_c^+π^+$太大,与从LHCB相比,相对于其相对于$ $ξ_}+ex}+cc}++的速率相比,它太大了。 π^+π^+$。
In this work we study the doubly charmed baryon decays $Ξ_{cc}^{++}\toΞ_c^{(\prime)+}π^+$ within the framework of the non-relativistic quark model (NRQM). Factorizable amplitudes are expressed in terms of transition form factors, while nonfactorizable amplitudes arising form the inner $W$-emission are evaluated using current algebra and the pole model and expressed in terms of baryonic matrix elements and axial-vector form factors. Nonperturbative parameters are then calculated using the NRQM. They can be expressed in terms of the momentum integrals of baryon wave functions, which are in turn expressed in terms of the harmonic oscillator parameters $α_ρ$ and $α_λ$ for $ρ$- and $λ$-mode excitation. The measured ratio $R$ of the branching fraction of $Ξ_{cc}^{++}\to Ξ^{\prime +}_cπ^+$ relative to $Ξ_{cc}^{++}\to Ξ_c^+π^+$ can be accommodated in the NRQM with $α_{ρ1}$ and $α_{ρ_2}$ being in the vicinity of 0.51 and 0.19, respectively, where $α_{ρ1}$ is the $α_ρ$ parameter for $Ξ_{cc}^{++}$ and $α_{ρ2}$ for $Ξ_{c}^{(\prime)+}$. Decay asymmetries are predicted to be $-0.78$ and $-0.89$ for $Ξ_c^+π^+$ and $Ξ_c^{\prime +}π^+$ modes, respectively, which can be tested in the near future. We compare our results with other works and point out that although some other models can accommodate the ratio $R$, they tend to lead to a branching fraction of $Ξ_{cc}^{++}\to Ξ_c^+π^+$ too large compared to that inferred from the LHCb measurement of its rate relative to $Ξ_{cc}^{++}\toΛ_c^+ K^- π^+π^+$.