Nucleon Resonance Electrocouplings from the CLAS Meson Electroproduction Data
Abstract
Transition helicity amplitudes (electrocouplings) were determined for prominent excited proton states with masses below 1.8 GeV in independent analyses of major meson electroproduction channels: , and . Consistent results on resonance electrocouplings obtained from analyses of these exclusive reactions with different non-resonant contributions demonstrate reliable extraction of these fundamental quantities for states that have significant decays for either or channels. Preliminary results on electrocouplings of states with masses above 1.6 GeV have become available from the CLAS data on electroproduction off protons for the first time. Comparison with quark models and coupled-channel approaches strongly suggest that structure is determined by contributions from an internal core of three constituent quarks and an external meson-baryon cloud at the distances covered in these measurements with the CLAS detector.
Cite
@article{arxiv.1108.1125,
title = {Nucleon Resonance Electrocouplings from the CLAS Meson Electroproduction Data},
author = {I. G. Aznauryan and V. D. Burkert and V. I. Mokeev},
journal= {arXiv preprint arXiv:1108.1125},
year = {2015}
}
Comments
6 pages, 3 figures