d(e,e'p) Studies of Exclusive Deuteron Electro-Disintegration

Abstract

The d(e,e'p) cross section was measured at momentum transfers Q2 = 0.8, 2.1 and 3.5 (GeV/c)2 covering a wide range of proton kinematics at each Q2 setting that made it possible to study this reaction as a function of missing momentum as well as a function of the neutron laboratory recoil angle θnq. Missing momentum distributions were determined for fixed values of θnq up to missing momenta of 0.65 GeV/c. For the two larger momentum transfer settings, the characteristics of the experimental momentum distributions confirm the theoretical prediction that final state interactions (FSI) contribute maximally around a θnq 70, while for θnq < 45 FSI are significantly reduced. The data at reduced FSI settings were best reproduced by calculations using the CD-Bonn potential wave functions.

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