English

Excited Baryon Structure Using Exclusive Reactions with CLAS12

Nuclear Experiment 2016-06-22 v1 Nuclear Theory

Abstract

Studying excited nucleon structure through exclusive electroproduction reactions is an important avenue for exploring the nature of the non-perturbative strong interaction. Electrocouplings for NN^* states in the mass range below 1.8~GeV have been determined from analyses of CLAS πN\pi N, ηN\eta N, and ππN\pi \pi N data. This work made it clear that consistency of independent analyses of exclusive channels with different couplings and non-resonant backgrounds but the same NN^* electro-excitation amplitudes, is essential to have confidence in the extracted results. In terms of hadronic coupling, many high-lying NN^* states preferentially decay through the ππN\pi \pi N channel instead of πN\pi N. Data from the KYKY channels will therefore be critical to provide an independent analysis to compare the extracted electrocouplings for the high-lying NN^* states against those determined from the πN\pi N and ππN\pi \pi N channels. A program to study excited NN^* decays to non-strange and strange exclusive final states using CLAS12 will measure differential cross sections to be used as input to extract the γvNN\gamma_vNN^* transition form factors for the most prominent NN^* states in the range of invariant energy WW up 3~GeV in the virtually unexplored domain of momentum transfers Q2Q^2 up to 12~GeV2^2.

Keywords

Cite

@article{arxiv.1511.07219,
  title  = {Excited Baryon Structure Using Exclusive Reactions with CLAS12},
  author = {Daniel S. Carman},
  journal= {arXiv preprint arXiv:1511.07219},
  year   = {2016}
}

Comments

6 pages, 3 figures, Hadron 2015 conference

R2 v1 2026-06-22T11:52:01.211Z