Heavy quarkonia in a contact interaction and an algebraic model: mass spectrum, decay constants, charge radii and elastic and transition form factors
arXiv:1711.00383 · doi:10.1007/s00601-018-1455-y
Abstract
For the flavor-singlet heavy quark system of bottomonia, we compute the masses of the ground state mesons in four different channels, namely, pseudo-scalar (), vector (), scalar () and axial vector (). We also calculate the weak decay constants of the and as well as the charge radius of . It complements our previous study of the corresponding charmonia systems: , , ) and (). The unified formalism for this analysis is provided by a symmetry-preserving Schwinger-Dyson equations treatment of a vectorvector contact interaction. Whenever a comparison is possible, our results are in fairly good agreement with experimental data and model calculations based upon Schwinger-Dyson and Bethe-Salpeter equations involving sophisticated interaction kernels. Within the same framework, we also report the elastic and transition form factors to two photons for the pseudo-scalar channels and in addition to the elastic form factors for the vector mesons and for a wide range of photon momentum transfer squared (). For and , we also provide predictions of an algebraic model which correlates remarkably well between the known infrared and ultraviolet limits of these form factors.
11 pages, 6 figures. arXiv admin note: text overlap with arXiv:1606.03760
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