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Nucleon resonances with hidden charm in gamma p reactions

机译:在γP反应中具有隐藏魅力的核仁共振

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摘要

The excitations of nucleon resonances with hidden charm, N-c (c) over bar*, in gamma p reactions are investigated by using the predictions from the available meson-baryon (MB) coupled-channel models of N-c (c) over bar*, with MB = rho N, omega N, J/psi N, (D) over bar Lambda(c), (D) over bar*Lambda(c), (D) over bar Sigma(c), (D) over bar*Sigma(c), (D) over bar Sigma(c)* . For the gamma p -> J/psi p process, we first apply the model of Donnachie and Landshoff to calculate the Pomeron-exchange amplitudes with the parameters determined from fitting the available total cross section data up to invariant mass W = 300 GeV. We then add the resonant gamma p -> N-c (c) over bar* -> J/psi p amplitudes to examine the effects of N-c (c) over bar* excitations on the cross sections of gamma p -> J/psi p in the near threshold energy region covered by the recent experiments at Jefferson Lab. The N-c (c) over bar* -> MB transition matrix elements are determined from the partial decay widths predicted by the considered meson-baryon coupled-channel models of N-c (c) over bar*. The gamma p -> N-c (c) over bar* transition amplitudes are calculated from the vector meson dominance (VMD) model as gamma p -> Vp -> N-c (c) over bar* with V = rho, omega, J/psi. The total gamma p -> J/psi p amplitudes then depend on an off-shell form factor, parametrized as F-V (q(2)) = Lambda(4)(V)/[Lambda(4)(V) + (q(2) - m(V)(2))(2)], which is needed to account for the q(2) dependence of the photon-vector meson coupling constant e m(V)(2)/f(V) of the VMD model. It was found that, with Lambda(V) = 0.55 GeV, the predicted total cross sections are within the range of the data in the energy region near the J/psi production threshold. We then demonstrate that the N-c (c) over bar* can be most easily identified in the differential cross sections at large angles where the contribution from Pomeron exchange becomes negligible. With the same VMD model and the same coupled-channel models of N-c (c) over bar*, we also calculate the resonant amplitudes for the gamma p -> Vp -> N-c (c) over bar* -> (D) over bar (0)Lambda(+)(c)((D) over bar*(0)Lambda(+)(c)) processes. By adding the nonresonant amplitudes due to the exchange of (D) over bar*(0) ((D) over bar (0)), we then predict the cross sections of gamma p -> (D) over bar (0)Lambda(+)(c)((D) over bar*(0)Lambda(+)(c)) for additional experimental tests of the available meson-baryon coupled-channel models of N-c (c) over bar*.
机译:通过使用来自BAR *的可用Meson-Baryon(MB)耦合频道模型的预测Mb = rho n,Omega n,j / psi n,(d)通过酒吧Lambda(c),(d)在Bar * lambda(c),(d)上方的条形σ(c),(d)上方bar * Sigma(c),(d)在酒吧Σ(c)*。对于Gamma P - > J / PSI P过程,我们首先应用Donnachie和Landshoff的模型,以计算利用拟合可用的总横截面数据的参数来计算PoMeron-Exchange幅度,该参数由不变质量W = 300 GEV拟合。然后,我们将共振伽马p - > nc(c)添加在棒* - > j / psi p幅度上,以检查NC(c)在γp - > j / psi p的横截面上的横截面上的nc(c)的效果杰斐逊实验室最近的实验涵盖的近阈值能源区。在由COMED(C)的MESON-BARYON耦合信道模型的N-C(C)上方的偏衰减宽度上方的部分衰减宽度确定N-C(C)。 γP - > NC(c)上的γ型P - > NC(C)由v = rho,ω,j / psi的v = rho,eSeon p - > vp - > nc(c)计算,从vamma p - > vp - > nc(c)计算。 。然后总γp - > J / PSI P振幅依赖于脱壳形状因子,参数化为Fv(Q(2))=λ(4)(V)/ [λ(4)(V)+(Q (2) - M(v)(2))(2)],需要考虑光子载体Meson耦合常数Em(v)(2)/ f(v)的Q(2)依赖性VMD模型。结果发现,利用Lambda(V)= 0.55 GEV,预测的总横截面在J / PSI生产阈值附近的能量区域中的数据范围内。然后,我们证明,在大角度的差分横截面中可以最容易地识别N-C(C),其中PoMeron交换的贡献可以忽略不计。利用相同的VMD模型和相同的NC(C)耦合频道模型,我们还在条形上计算伽马P - > VP - > NC(C)的谐振幅度 - >(c) (0)λ(+)(c)((d)在酒吧*(0)Lambda(+)(c))过程。由于(d)的交换而添加非群体幅度,在棒*(0)((d)上方的条(0)),然后我们预测伽马p - >(d)的横截面上方的ram(0)λ (+)(c)((d)在酒吧*(0)Lambda(+)(c)),用于额外的Meson-Baryon耦合频道模型的额外实验测试NC(C)上方的Bar *。

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