Light-front approach to axial-vector quarkonium $\gamma^* \gamma^*$ form factors
Abstract
In this work, we perform a detailed study of transition form factors for axial-vector meson production via the two-photon fusion process , with space-like virtual photons in the initial state and a -wave axial-vector quarkonium in the final state. In this analysis, we employ the formalism of light-front quarkonium wave functions obtained from a solution of the Schr\"odinger equation for a selection of interquark potentials for interaction. We found the helicity structure and covariant decomposition of the matrix elements that can be generically applied for any axial-vector meson transition, while our numerical results are given for the phenomenologically relevant charmonium state. We present the helicity form factors as functions of both photon virtualities. We also obtain, that
Keywords
Cite
@article{arxiv.2208.05377,
title = {Light-front approach to axial-vector quarkonium $\gamma^* \gamma^*$ form factors},
author = {Izabela Babiarz and Roman Pasechnik and Wolfgang Schäfer and Antoni Szczurek},
journal= {arXiv preprint arXiv:2208.05377},
year = {2022}
}
Comments
25 pages, 7 figures