Abstract

The proton spectral function has experimentally been determined with the 3He(e, e′p) reaction for missing energies, 0< E m<70MeV, and recoil momenta, 0< P B<310 MeV/ c. Experimental results are obtained for both the two-body, 3He(e, e′p) 2H, and three-body breakup processes. Proton momentum density distributions, obtained in a PWIA analysis, are compared with theoretical calculations: Faddeev solutions with the RSC and Paris potentials, and variational calculations with various potentials, including those with a three-nucleon interaction term. Energy-weighted sum rule results are presented and compared with theoretical predictions. The coincidence cross sections are also compared with calculations which include the effects of final state interactions and meson exchange currents. Consistency of the results with PWIA is investigated in the framework of the Chew-Low extrapolation procedure.

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