The binding energies, shapes and sizes of even-even beta-stable nuclei with A >= 40 and a few chains of isotopes with Z=50, 56, 82, 94 protons and isotones with N=50, 82, 126 neutrons are analyzed. The average isospin dependence of the radii of protons and neutrons evaluated within the relativistic mean field theory is studied. A simple, phenomenological formula for neutron radii is proposed
The strong dependence of Coulomb energies on nuclear radii makes it possible to extract the latter f...
We present Dirac-Brueckner-Hartree-Fock calculations for isospin asymmetric nuclear matter which are...
AbstractThe differences between the experimental and Relativistic Mean Field binding energies have b...
A systematic study of the ground-state properties of even-even rare earth nuclei has been performed ...
Self-consistent calculations within the relativistic mean field theory (RMFT) were performed for 150...
A systematic study of the ground-state properties of even-even rare earth nuclei has been performed ...
The standard relativistic mean-field density functionals based on non-linear meson exchange terms ar...
Based on the systematic investigation of the data available for nuclei with A greater than or equal ...
AbstractWe use a relativistic mean field model to study the charge density distributions of exotic o...
openDue to the short range interaction of the nucleon-nucleon force, the nuclear surface is well del...
The ground state nucleon (neutron and proton) distributions for A = 20 isobars (Z = 6-12) are invest...
A clear connection can be established between properties of nuclear matter and finite-nuclei observa...
The Gamow-Teller resonances (GTR) and isobaric analog states (IAS) of a sequence of even-even Sn tar...
We use the relativistic mean field (RMF) theory to systematically study the change of deformation of...
Accurately calibrated effective field theories are used to compute atomic parity nonconserving (APNC...
The strong dependence of Coulomb energies on nuclear radii makes it possible to extract the latter f...
We present Dirac-Brueckner-Hartree-Fock calculations for isospin asymmetric nuclear matter which are...
AbstractThe differences between the experimental and Relativistic Mean Field binding energies have b...
A systematic study of the ground-state properties of even-even rare earth nuclei has been performed ...
Self-consistent calculations within the relativistic mean field theory (RMFT) were performed for 150...
A systematic study of the ground-state properties of even-even rare earth nuclei has been performed ...
The standard relativistic mean-field density functionals based on non-linear meson exchange terms ar...
Based on the systematic investigation of the data available for nuclei with A greater than or equal ...
AbstractWe use a relativistic mean field model to study the charge density distributions of exotic o...
openDue to the short range interaction of the nucleon-nucleon force, the nuclear surface is well del...
The ground state nucleon (neutron and proton) distributions for A = 20 isobars (Z = 6-12) are invest...
A clear connection can be established between properties of nuclear matter and finite-nuclei observa...
The Gamow-Teller resonances (GTR) and isobaric analog states (IAS) of a sequence of even-even Sn tar...
We use the relativistic mean field (RMF) theory to systematically study the change of deformation of...
Accurately calibrated effective field theories are used to compute atomic parity nonconserving (APNC...
The strong dependence of Coulomb energies on nuclear radii makes it possible to extract the latter f...
We present Dirac-Brueckner-Hartree-Fock calculations for isospin asymmetric nuclear matter which are...
AbstractThe differences between the experimental and Relativistic Mean Field binding energies have b...