192 citations · 522 across the 10 of their papers we have counts for
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Configuration mixing of angular-momentum and particle-number projected triaxial HFB states using the Skyrme energy density functional
M. Bender, P. -H. Heenen
We present a method based on mean-field states generated by triaxial quadrupole constraints which are projected on particle number and angular momentum and mixed by the generator c…
Large-amplitude Qn-Qp collectivity in the neutron-rich oxygen isotope 20O
A. P. Severyukhin, M. Bender, H. Flocard +1
By means of HFB calculations with independent constraints on axial neutron and proton quadrupole moments Q_n and Q_p, we investigate the large amplitude isoscalar and isovector def…
Global study of the spectroscopic properties of the first 2+ state in even-even nuclei
B. Sabbey, M. Bender, G. F. Bertsch +1
We discuss the systematics of the 2+ excitation energy and the transition probability from this 2+ to the ground state for most of the even-even nuclei, from O16 up to the actinide…
Spectroscopy of heavy nuclei by configuration mixing of symmetry restored mean-field states: Shape coexistence in neutron-deficient Pb isotopes
M. Bender, P. Bonche, T. Duguet +1
We study shape coexistence and low-energy excitation spectra in neutron-deficient Pb isotopes using configuration mixing of angular-momentum and particle-number projected self-cons…
Properties of nuclei in the neutron star crust
Piotr Magierski, Aurel Bulgac, Paul-Henri Heenen
In the present study we investigate the static properties of nuclei in the inner crust of neutron stars. Using the Hartree-Fock method in coordinate space, together with the semicl…
Odd-even mass differences in self-consistent Mean-Field calculations
T. Duguet, P. Bonche, P. -H. Heenen +1
The odd-even mass staggering (OES) of nuclei is analyzed in the context of self-consistent mean-field calculations. The procedure developed allows to understand the OES for spheric…