English

The resonant $\pi^+\gamma\to\pi^+\pi^0$ amplitude from Quantum Chromodynamics

High Energy Physics - Phenomenology 2015-12-11 v2 High Energy Physics - Lattice Nuclear Theory

Abstract

We present the first ab initio calculation of a radiative transition of a hadronic resonance within quantum chromodynamics (QCD). We compute the amplitude for πππγ\pi\pi \to \pi\gamma^\star, as a function of the energy of the ππ\pi\pi pair and the virtuality of the photon, in the kinematic regime where ππ\pi\pi couples strongly to the unstable ρ\rho resonance. This exploratory calculation is performed using a lattice discretization of QCD with quark masses corresponding to mπ400m_\pi \approx 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\rho pole and identify from its residue the ρπγ\rho \to \pi\gamma^\star form factor.

Keywords

Cite

@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