Vector transition form factors of the and in the SU(3) chiral quark-soliton model
arXiv:0803.2276 · doi:10.1016/j.nuclphysa.2008.08.002
Abstract
We investigate the vector transition form factors of the nucleon and vector meson K^* to the pentaquark baryon Theta^+ within the framework of the SU(3) chiral quark-soliton model. We take into account the rotational 1/N_c and linear corrections, assuming isospin symmetry and employing the symmetry-conserving quantization. It turns out that the leading-order contributions to the form factors are almost cancelled by the rotational corrections. Because of this, the flavor SU(3) symmetry-breaking terms yield sizeable effects on the vector transition form factors. In particular, the main contribution to the electric-like transition form factor comes from the wave-function corrections, which is a consequence of the generalized Ademollo-Gatto theorem derived in the present work. We estimate with the help of the vector meson dominance the K^* vector and tensor coupling constants for the Theta^+: and . We argue that the outcome of the present work is consistent with the null results of the CLAS experiments in the reactions gamma n -> K^- Theta^+ and gamma p ->bar{K}^0 Theta^+. The results of the present work are also consistent with the recent experiments at KEK. In addition, we present the results of the transition form factors and its coupling constants.
26 pages, 10 figures
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- Electromagnetic form factors of the baryon decuplet with flavor SU(3) symmetry breaking
- Axial-vector transitions and strong decays of the baryon antidecuplet in the self-consistent SU(3) chiral quark-soliton model
- Axial-vector transition form factors of the baryon octet to the baryon decuplet with flavor SU(3) symmetry breaking
- Photoproduction of Theta^+(1540,1/2^+) reexamined with new theoretical information