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Microscopic mass formulas
Physical Review C · 1995 · Vol. 52(1) · pp. R23–R27
J. Duflo✉(Campus France)A. P. Zuker(Institut National de Physique Nucléaire et de Physique des Particules)
Abstract
By assuming the existence of a pseudopotential smooth enough to do Hartree-Fock variations and good enough to describe nuclear structure, we construct mass formulas that rely on general scaling arguments and on a schematic reading of shell model calculations. Fits to 1751 known binding energies for N,Z\ensuremath{\ge}8 lead to rms errors of 375 keV with 28 parameters. Tests of the extrapolation properties are passed successfully. The Bethe-Weizs\"acker formula is shown to be the asymptotic limit of the present one(s). The surface energy of nuclear matter turns out to be probably smaller than currently accepted.
Nuclear physics research studiesAstronomical and nuclear sciencesQuantum Chromodynamics and Particle InteractionsExtrapolationPseudopotentialPhysicsScalingSchematicLimit (mathematics)Shell (structure)Nuclear matterSurface (topology)Mathematical physics
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