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55 papers · 1 filter
Impact of finite-range spin-orbit and tensor terms in Gogny EDF
G. Zietek, N. Pillet, M. Anguiano +5
Energy Density Functionals are of major interest for the study of the atomic nucleus as, coupled with mean-field and beyond N-body approaches, they are applicable to the whole nucl…
TENDL-astro: a new nuclear data set for astrophysics interest
D. Rochman, A. Koning, S. Goriely +1
In this work, we are presenting a new database of astrophysical interest, based on calculations performed with the nuclear reaction code TALYS. Four quantities are systematically c…
What to expect from microscopic nuclear modelling for k calculations ?
D. Rochman, A. Koning, S. Goriely +1
Comparisons between predicted and benchmark k values from criticality-safety systems are often used as metrics to estimate the quality of evaluated nuclear data librari…
Mean-field approximation on steroids: exact description of the deuteron
B. Bally, A. Scalesi, V. Somà +2
The present article demonstrates that the deuteron, i.e. the lightest bound nuclear system made of a single proton and a single neutron, can be accurately described within a mean-f…
Dimensionality reduction through tensor factorization : application to \textit{ab initio} nuclear physics calculations
Mikael Frosini, Thomas Duguet, Pierre Tamagno +1
The construction of predictive models of atomic nuclei from first principles is a challenging (yet necessary) task towards the systematic generation of theoretical predictions (and…
Multiconfigurational time-dependent density functional theory for atomic nuclei: Technical and numerical aspects
Petar Marević, David Regnier, Denis Lacroix
The nuclear time-dependent density functional theory (TDDFT) is a tool of choice for describing various dynamical phenomena in atomic nuclei. In a recent study, we reported an exte…