English

Two Pion Photo- and Electroproduction with CLAS

Nuclear Experiment 2019-10-03 v2 High Energy Physics - Phenomenology

Abstract

Exclusive π+πp\pi^+\pi^-p photo- and electroproduction data from CLAS have considerably extended the information on the spectrum and structure of nucleon resonances. The data from the π+πp\pi^+\pi^-p and NπN\pi channels have provided results on the electrocouplings of most resonances in the mass region up to 1.8 GeV and at photon virtualities up to 5.0 GeV2^2. The recent CLAS data on π+πp\pi^+\pi^-p photoproduction have improved knowledge on the photocouplings of nucleon resonances in the mass range of 1.6 GeV << MNM_{N^*} << 2.0 GeV and on their decays to the πΔ\pi \Delta and ρp\rho p final hadron states. For the first time, the electrocouplings of the N(1440)1/2+N(1440)1/2^+ and N(1520)3/2N(1520)3/2^- excited states have become available from π+πp\pi^+\pi^-p data at 2.0 GeV2^2 << Q2Q^2 << 5.0 GeV2^2. Analyses of the combined π+πp\pi^+\pi^-p photo- and electroproduction data have revealed evidence for the candidate-state N(1720)3/2+N'(1720)3/2^+. The new results on the nucleon resonance spectrum, electroexcitation amplitudes from analysis of the CLAS π+πp\pi^+\pi^-p photo- and electroproduction data, and their impact on the exploration of strong QCD are presented.

Keywords

Cite

@article{arxiv.1909.08746,
  title  = {Two Pion Photo- and Electroproduction with CLAS},
  author = {Victor I Mokeev},
  journal= {arXiv preprint arXiv:1909.08746},
  year   = {2019}
}