The theoretical analysis of the γγ→π0η process is presented within the energy range up to 1.4 GeV. The S-wave resonance a0(980) is described involving the coupled channel dispersive framework and the D-wave a2(1320) is approximated as a Breit-Wigner resonance. For the a0(980) the pole is found on the IV Riemann sheet resulting in a two-photon decay width of Γa0→γγ=0.27(4) keV. The first dispersive prediction is provided for the single-virtual γγ∗(Q2)→π0η process in the spacelike region up to Q2=1 GeV2.
@article{arxiv.1808.04117,
title = {Theoretical analysis of the $\gamma\gamma^{(*)} \to \pi^0\eta$ process},
author = {Oleksandra Deineka and Igor Danilkin and Marc Vanderhaeghen},
journal= {arXiv preprint arXiv:1808.04117},
year = {2019}
}
Comments
4 pages, 1 figure, proceedings of the MESON2018 (15$^\textrm{th}$ International Workshop on Meson Physics, KRAK\'OW, POLAND, 7th - 12th June 2018)