The ground-state correlation energies associated with collective surface and pairing vibrations are calculated for Pb and Ca isotopes. It is shown that this contribution, when added to those predicted by one of the most accurate modern nuclear mass formulae (HFBCS MSk7 mass formula), reduces the associated rms error by an important factor, making mean-field theory, once its time dependence is taken into account, a quantitative predictive tool for nuclear masses.

Correlation energy contribution to nuclear masses / S. Baroni, M. Armati, F. Barranco, R. A. Broglia, G. Colo', G. Gori, E. Vigezzi. - In: JOURNAL OF PHYSICS. G, NUCLEAR AND PARTICLE PHYSICS. - ISSN 0954-3899. - 30:10(2004), pp. 1353-1360.

Correlation energy contribution to nuclear masses

S. Baroni
Primo
;
R. A. Broglia;G. Colo';G. Gori
Penultimo
;
2004

Abstract

The ground-state correlation energies associated with collective surface and pairing vibrations are calculated for Pb and Ca isotopes. It is shown that this contribution, when added to those predicted by one of the most accurate modern nuclear mass formulae (HFBCS MSk7 mass formula), reduces the associated rms error by an important factor, making mean-field theory, once its time dependence is taken into account, a quantitative predictive tool for nuclear masses.
Nuclear collective states ; nuclear mass ; rotating nuclei ; surface fluctuations ; pairing vibrations ; field-theory ; density ; model ; phase
Settore FIS/04 - Fisica Nucleare e Subnucleare
Settore FIS/01 - Fisica Sperimentale
2004
http://www.iop.org/EJ/abstract/0954-3899/30/10/002/
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/31245
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