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NSR database version of May 10, 2024.

Search: Author = A.M.Nugraha

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2024LI01      Nucl.Phys. A1042, 122812 (2024)

N.Liliani, A.M.Nugraha, J.P.Diningrum, A.Sulaksono

Tensor and isovector–isoscalar terms of relativistic mean field model: Impacts on neutron-skin thickness, charge radius, and nuclear matter

NUCLEAR STRUCTURE 208Pb, 40,48Ca, 132Sn; calculated neutron skin thickness; deduced parameters using the combination of tensor and nonlinear isovector–isoscalar couplings in the RMF model. Comparison with the CREX and PREX collaborations data.

doi: 10.1016/j.nuclphysa.2023.122812
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2016LI28      Phys.Rev. C 93, 054322 (2016)

N.Liliani, A.M.Nugraha, J.P.Diningrum, A.Sulaksono

Impacts of the tensor couplings of ω and ρ mesons and Coulomb-exchange terms on superheavy nuclei and their relation to the symmetry energy

NUCLEAR STRUCTURE A=8-210; 40Ca, 122Sn, 208Pb; calculated effects of the tensor couplings of ω and ρ meson terms, the Coulomb-exchange term, and the isoscalar-isovector couplings on relative errors of binding energies, rms radii, surface thicknesses, and diffraction radii. 208Pb; calculated correlation between the neutron skin thicknesses and symmetry energy. Z=82, N=118-138; N=126, Z=76-100; Z=120, N=160-190; N=172, Z=112-130; calculated binding energies, two-neutron and two-proton gaps, effects of tensor couplings, the Coulomb-exchange term and isoscalar-isovector couplings on two-neutron and two-proton gaps. 208Pb, 292120; calculated single-proton and single-neutron states, nucleon density distributions, neutron skin thicknesses and mean square charge radii and effects of tensor couplings and the Coulomb-exchange term with isoscalar-isovector couplings. Relativistic mean-field model calculations for the properties of nuclear matter, finite nuclei, and superheavy nuclei.

doi: 10.1103/PhysRevC.93.054322
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