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Magnetic moments of the ground-state JP=(3/2)+\mathbf{J^P=(3/2)}^{+} baryon decuplet

Abstract

The magnetic moment - a function of the electric charge form factor F1(q2)F_{1}(q^{2}) and the magnetic dipole form factor F2(q2)F_{2}(q^{2}) at zero four-momentum transfer q2q^{2}-of the ground-state JP=(3/2)+J^{P}=(3/2)^{+} baryon decuplet magnetic moments have been studied for many years with limited success. At present, only the magnetic moment of the Ω\Omega^{-} has been accurately determined. We calculate nonperturbatively the magnetic moments of the \emph{physical baryon decuplet JP=(3/2)+J^{P}=(3/2)^{+}} members and in particular, we obtain μΔ++=(+3.67±0.07)μN\mu_{\Delta^{++}}= (+3.67 \pm 0.07) \mu_{N}, μΔ+=(+1.83±0.04)μN\mu_{\Delta^{+}}= (+1.83 \pm 0.04) \mu_{N}, μΔ0=(0)μN\mu_{\Delta^{0}}= (0) \mu_{N}, and the magnetic moments of their UU-Spin partners in terms of Ω\Omega^{-} magnetic moment data.Comment: 9 pages including 1 figure and 1 table. Corrected typos in Eqs.(7) and (8). Results and conclusions unchanged. arXiv admin note: repeats content from arXiv:1105.3786 and arXiv:0911.475

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