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Spin Structure Function of the Deuteron in the Resonance Region and the GDH Sum Rule for the Neutron

arXiv:nucl-th/9602026

Abstract

The nuclear effects in the spin-dependent structure function $g_1$ of the deuteron are studied in the kinematics of future experiments at CEBAF, ($ν\leq 3~GeV, ~Q^2 \leq 2~GeV^2$). The magnitude of the nuclear effects is found to be significantly larger than the one occurring in deep inelastic scattering ($ν\to \infty, ~Q^2\to \infty$). We discuss the mechanism leading to large effects in the region of the nucleon resonances. A possibility to measure the neutron structure functions in the CEBAF experiments with deuterium is analysed, and conclusions about the experimental study of the $Q^2$ dependence of the Gerasimov-Drell-Hearn Sum Rule for the neutron are drawn.

13 pages, 7 Postscript figures, Talk presented at the 9-th Amsterdam miniconference "Electromagnetic studies of the deuteron", NIKHEF, Amsterdam, February 1-2, 1996; to appear in proceedings