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- W2088508043 abstract "Resolution of discrete final states in the ${}^{16}mathrm{O}{(e,e}^{ensuremath{'}}{pp)}^{14}mathrm{C}$ reaction may provide an interesting tool to discriminate between contributions from one- and two-body currents in this reaction. This is based on the observation that the ${0}^{+}$ ground state and first ${2}^{+}$ state of ${}^{14}mathrm{C}$ are reached predominantly by the removal of a ${}^{1}{S}_{0}$ pair from ${}^{16}mathrm{O}$ in this reaction, whereas other states mostly arise by the removal of a ${}^{3}P$ pair. This theoretical prediction has been supported recently by an analysis of the pair momentum distribution of the experimental data [1]. In this paper we present results of reaction calculations performed in a direct knockout framework where final-state interaction and one- and two-body currents are included. The two-nucleon overlap integrals are obtained from a calculation of the two-proton spectral function of ${}^{16}mathrm{O}$ and include both long-range and short-range correlations. The kinematics chosen in the calculations is relevant for recent experiments at NIKHEF and Mainz. We find that the knockout of a ${}^{3}P$ proton pair is largely due to the (two-body) ensuremath{Delta} current. The ${}^{1}{S}_{0}$ pair knockout, on the other hand, is dominated by contributions from the one-body current and therefore sensitive to two-body short-range correlations. This opens up good perspectives for the study of these correlations in the ${}^{16}mathrm{O}{(e,e}^{ensuremath{'}}pp)$ reaction involving the lowest few states in ${}^{14}mathrm{C}.$ In particular the longitudinal structure function ${f}_{00},$ which might be separated with superparallel kinematics, turns out to be quite sensitive to the $mathrm{NN}$ potential that is adopted in the calculations." @default.
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- W2088508043 date "1998-04-01" @default.
- W2088508043 modified "2023-09-24" @default.
- W2088508043 title "Selectivity of the16O(e,e′pp)reaction to discrete final states" @default.
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- W2088508043 doi "https://doi.org/10.1103/physrevc.57.1691" @default.
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