English

Light-front approach to axial-vector quarkonium $\gamma^* \gamma^*$ form factors

High Energy Physics - Phenomenology 2022-10-19 v1

Abstract

In this work, we perform a detailed study of transition form factors for axial-vector meson production via the two-photon fusion process γγ1++\gamma^* \gamma^* \to 1^{++}, with space-like virtual photons in the initial state and a PP-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 QQˉQ \bar Q interaction. We found the helicity structure and covariant decomposition of the matrix elements that can be generically applied for any qqˉq \bar q axial-vector meson γγ1++\gamma^* \gamma^* \to 1^{++} transition, while our numerical results are given for the phenomenologically relevant charmonium χc1\chi_{c1} state. We present the helicity form factors as functions of both photon virtualities. We also obtain, that QFLT(Q2,0)/FTT(Q2,0)=const.Q F_{\rm LT}(Q^2,0)/F_{\rm TT}(Q^2,0) = {\rm const.}

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