arXiv:0809.2895·v2·Nuclear Theory
Non-empirical pairing energy density functional. First order in the nuclear plus Coulomb two-body interaction
T. Lesinski🇫🇷 · T. Duguet🇫🇷 · K. Bennaceur🇫🇷 · J. Meyer🇫🇷
Abstract
We perform systematic calculations of pairing gaps in semi-magic nuclei across the nuclear chart using the Energy Density Functional method and a {\it non-empirical} pairing functional derived, without further approximation, at lowest order in the two-nucleon vacuum interaction, including the Coulomb force. The correlated single-particle motion is accounted for by the SLy4 semi-empirical functional. Rather unexpectedly, both neutron and proton pairing gaps thus generated are systematically close to experimental data. Such a result further suggests that missing effects, i.e. higher partial-waves of the NN interaction, the NNN interaction and the coupling to collective fluctuations, provide an overall contribution that is sub-leading as for generating pairing gaps in nuclei. We find that including the Coulomb interaction is essential as it reduces proton pairing gaps by up to 40%.
Comments: 6 pages, 1 figure, accepted for publication in EPJA