activity
20122019
most citedNi revealed as a doubly magic stronghold against nuclear deformation

189 citations · 577 across the 6 of their papers we have counts for

collaborators

6 papers

nucl-ex2019189 cited

Ni revealed as a doubly magic stronghold against nuclear deformation

R. Taniuchi, C. Santamaria, P. Doornenbal +68

Nuclear magic numbers, which emerge from the strong nuclear force based on quantum chromodynamics, correspond to fully occupied energy shells of protons, or neutrons inside atomic…

nucl-ex2019164 cited

Reference Database for Photon Strength Functions

S. Goriely, P. Dimitriou, M. Wiedeking +16

Photon strength functions describing the average response of the nucleus to an electromagnetic probe are key input information in the theoretical modelling of nuclear reactions. Co…

nucl-ex201916 cited

Nuclear level densities and gamma-ray strength functions of Ta

C. P. Brits, K. L. Malatji, M. Wiedeking +24

Particle- coincidence experiments were performed at the Oslo Cyclotron Laboratory with the Ta(d,X) and Ta(He,X) reactions, to measure the nuclear level den…

nucl-th2016101 cited

Large-scale deformed quasiparticle random-phase approximation calculations of the -ray strength function using the Gogny force

M. Martini, S. Péru, S. Hilaire +2

Valuable theoretical predictions of nuclear dipole excitations in the whole chart are of great interest for different nuclear applications, including in particular nuclear astrophy…

nucl-th201461 cited

Gamow-Teller strength in deformed nuclei within the self-consistent charge-exchange quasi-particle random-phase approximation with the Gogny force

M. Martini, S. Péru, S. Goriely

The charge-exchange excitations in nuclei are studied within the fully self-consistent proton-neutron quasiparticle random-phase approximation using the finite-range Gogny interact…

nucl-ex201246 cited

Discovery of a new isomeric state in Ni: Evidence for a highly-deformed proton intruder state

A. Dijon, E. Clément, G. De France +26

We report on the observation of a new isomeric state in Ni. We suggest that the newly observed state at 168(1) keV above the first 2 state is a 0 state…