The neutron magnetic form factor G_M^n(Q^2) from Quasi-Elastic inclusive scattering data on D and 4He
Abstract
We analyze cross sections for Quasi-Elastic inclusive scattering of electrons on nuclei and show that the observed isolated peaks for relatively low are unique for the lightest targets. Focusing in particular on D and He, we investigate in two ways to what measure the above peaks can be allocated to nucleon-elastic processes. We first compute approximate upper limits for the nucleon-inelastic background in the Quasi-Elastic region due to inclusive excitation, and find those to be small. Far more precise is a semi-phenomenological approach, where the dominance of nucleon-elastic processes is translated into a set of stringent requirements. We show that those are very well fulfilled for recent D data, and to a somewhat lesser extent for older D and He data. With knowledge of and information on , we then extract and find agreement with values obtained by alternative methods. We discuss the sensitivity of the extraction method and mention future applications.
Keywords
Cite
@article{arxiv.nucl-th/0307004,
title = {The neutron magnetic form factor G_M^n(Q^2) from Quasi-Elastic inclusive scattering data on D and 4He},
author = {A. S. Rinat and M. F. Taragin and M. Viviani},
journal= {arXiv preprint arXiv:nucl-th/0307004},
year = {2009}
}
Comments
21 pages, 9 figures, revtex4, revised version, Phys. Rev. C, in press