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arXiv:nucl-th/0307004·v2·Nuclear Theory

The neutron magnetic form factor G_M^n(Q^2) from Quasi-Elastic inclusive scattering data on D and 4He

A.S. Rinat (1) · M.F. Taragin (1) · M. Viviani (2) ((1) Weizmann Institute of Science, Department of Particle Physics, Rehovot, Israel (2) INFN, Sezione Pisa and Phys. Dept., University of Pisa, Pisa, Italy)

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.

Comments: 21 pages, 9 figures, revtex4, revised version, Phys. Rev. C, in press

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