English

Using the Single Quark Transition Model to predict nucleon resonance amplitudes

High Energy Physics - Phenomenology 2014-08-20 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

We present predictions for the γNN\gamma^\ast N \to N^\ast helicity amplitudes, where NN^\ast is a member of the [70,1][70,1^-] supermultiplet. We combine the results from the single quark transition model for the helicity amplitudes with the results of the covariant spectator quark model for the γNN(1535)\gamma^\ast N \to N^\ast(1535) and γNN(1520)\gamma^\ast N \to N^\ast(1520) transitions. The theoretical estimations from the covariant spectator quark model are used to calculate three independent functions A,BA,B, and CC of Q2Q^2, where Q2=q2Q^2=-q^2 and qq is the momentum transfer. With the knowledge of the functions A,BA,B, and CC we estimate the helicity amplitudes for the transitions γNN(1650)\gamma^\ast N \to N^\ast(1650), γNN(1700)\gamma^\ast N \to N^\ast(1700), γNΔ(1620)\gamma^\ast N \to \Delta(1620), and γNΔ(1700)\gamma^\ast N \to \Delta(1700). The analysis is restricted to reactions with proton targets. The predictions for the transition amplitudes are valid for Q2>2Q^2 > 2 GeV2^2.

Cite

@article{arxiv.1407.0649,
  title  = {Using the Single Quark Transition Model to predict nucleon resonance amplitudes},
  author = {G. Ramalho},
  journal= {arXiv preprint arXiv:1407.0649},
  year   = {2014}
}

Comments

Published version. 12 pages, 6 figures, extended bibliography

R2 v1 2026-06-22T04:53:40.024Z