English

Two-loop form factors for pseudo-scalar quarkonium production and decay

High Energy Physics - Phenomenology 2023-03-22 v2 Nuclear Theory

Abstract

We present the analytic expressions for the two-loop form factors for the production or decay of pseudo-scalar quarkonia, in a scheme where the quarks are produced at threshold. We consider the two-loop amplitude for the process γγ1S0[1]\gamma \gamma \leftrightarrow {^1S_0^{[1]}}, that was previously known only numerically, as well as for the processes gg1S0[1]gg \leftrightarrow {^1S_0^{[1]}}, γg1S0[8]\gamma g \leftrightarrow {^1S_0^{[8]}} and gg1S0[8]gg \leftrightarrow {^1S_0^{[8]}}, which have not been computed before. The two-loop corrections to gg1S0[1]gg \leftrightarrow {^1S_0^{[1]}} are the last missing ingredients for a full NNLO calculation of ηQ\eta_Q hadro-production. We discuss how the singularity structure of the amplitudes is affected by the threshold kinematics, which in particular introduces Coulomb singularities. In this context, we first show how the usual structure of the infrared singularities degenerates at threshold kinematics, and then extract the anomalous dimensions governing the Coulomb singularities for colour-singlet and octet channels, the latter being presented here for the first time. We give high-precision numerical results for the hard functions, which can be used for phenomenological studies of ηQ\eta_Q production and decay at NNLO.

Keywords

Cite

@article{arxiv.2211.08838,
  title  = {Two-loop form factors for pseudo-scalar quarkonium production and decay},
  author = {Samuel Abreu and Matteo Becchetti and Claude Duhr and Melih A. Ozcelik},
  journal= {arXiv preprint arXiv:2211.08838},
  year   = {2023}
}

Comments

37 pages, 1 figure, v2: version published in JHEP