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      Exploring sd-shell nuclei from two- and three-nucleon interactions with realistic saturation properties

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          Abstract

          We study ground- and excited-state properties of all sd-shell nuclei with neutron and proton numbers 8 <= N,Z <= 20, based on a set of low-resolution two- and three-nucleon interactions that predict realistic saturation properties of nuclear matter. We focus on estimating the theoretical uncertainties due to variation of the resolution scale, the low-energy couplings, as well as from the many-body method. The experimental two-neutron and two-proton separation energies are reasonably well reproduced, with an uncertainty range of about 5 MeV. The first excited 2+ energies also show overall agreement, with a more narrow uncertainty range of about 500 keV. In most cases, this range is dominated by the uncertainties in the Hamiltonian.

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          Author and article information

          Journal
          2015-08-20
          Article
          10.1103/PhysRevC.93.011302
          1508.05040
          d59e7c3f-656c-4115-8355-1fc4c2582bcc

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          Phys.Rev.C93:011302,2016
          6 pages, 4 figures
          nucl-th nucl-ex

          Nuclear physics
          Nuclear physics

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