Spin-dependent correlations and the semi-exclusive ^{16}O(e,e'p) reaction
Abstract
The effect of central, tensor and spin-isospin nucleon-nucleon correlations upon semi-exclusive ^{16}O(e,e'p) reactions is studied for Q^2 and Bjorken x values in the range and 0.15 x 2. The fully unfactorized calculations are performed in a framework that accounts not only for the dynamical coupling of virtual photons to correlated nucleon pairs but also for meson-exchange and -isobar currents. Tensor correlations are observed to produce substantially larger amounts of semi-exclusive ^{16}O(e,e'p) strength than central correlations do and are predominantly manifest in the proton-neutron knockout channel. With the exception of the case, in all kinematical situations studied the meson-exchange and isobar currents are a strong source of A(e,e'p) strength at deep missing energies. This feature gives the A(e,e'p) strength at deep missing energies a pronounced transverse character.
Cite
@article{arxiv.nucl-th/9911054,
title = {Spin-dependent correlations and the semi-exclusive ^{16}O(e,e'p) reaction},
author = {Stijn Janssen and Jan Ryckebusch and Wim Van Nespen and Dimitri Debruyne},
journal= {arXiv preprint arXiv:nucl-th/9911054},
year = {2016}
}
Comments
14 pages, 6 figures