Relativistic effects and two-body currents in 2H(e,ep)n using out-of-plane detection

Abstract

Measurements of the 2H(e,ep)n reaction were performed using an 800-MeV polarized electron beam at the MIT-Bates Linear Accelerator and with the out-of-plane magnetic spectrometers (OOPS). The longitudinal-transverse, fLT and fLT, and the transverse-transverse, fTT, interference responses at a missing momentum of 210 MeV/c were simultaneously extracted in the dip region at Q2=0.15 (GeV/c)2. On comparison to models of deuteron electrodisintegration, the data clearly reveal strong effects of relativity and final-state interactions, and the importance of the two-body meson-exchange currents and isobar configurations. We demonstrate that these effects can be disentangled and studied by extracting the interference response functions using the novel out-of-plane technique.

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