We present the first ab initio calculation of a radiative transition of a hadronic resonance within quantum chromodynamics (QCD). We compute the amplitude for ππ→πγ⋆, as a function of the energy of the ππ pair and the virtuality of the photon, in the kinematic regime where ππ couples strongly to the unstable ρ resonance. This exploratory calculation is performed using a lattice discretization of QCD with quark masses corresponding to mπ≈400~MeV. We obtain a description of the energy dependence of the transition amplitude, constrained at 48 kinematic points, that we can analytically continue to the ρ pole and identify from its residue the ρ→πγ⋆ form factor.
@article{arxiv.1507.06622,
title = {The resonant $\pi^+\gamma\to\pi^+\pi^0$ amplitude from Quantum Chromodynamics},
author = {Raul A. Briceno and Jozef J. Dudek and Robert G. Edwards and Christian J. Shultz and Christopher E. Thomas and David J. Wilson},
journal= {arXiv preprint arXiv:1507.06622},
year = {2015}
}
Comments
V2, version accepted for publication in PRL. More references added