International audienceWe present a selection of the first results obtained in a comprehensive calculation of ground state properties of even-even superheavy nuclei in the region of 96 < Z < 136 and 118 < N < 320 from the Quark-Meson-Coupling model (QMC). Ground state binding energies, the neutron and proton number dependence of quadrupole deformations and Qα values are reported for even-even nuclei with 100 < Z < 136 and compared with available experimental data and predictions of macro-microscopic models. Predictions of properties of nuclei, including Qα values, relevant for planning future experiments are presented
In this work, a new quark-meson coupling model is employed to study the ground-state properties of a...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...
International audienceWe present a selection of the first results obtained in a comprehensive calcul...
International audienceWe present a selection of the first results obtained in a comprehensive calcul...
We present a selection of the first results obtained in a comprehensive calculation of ground state ...
International audienceThe quark-meson-coupling (QMC) model has been applied to the study of the prop...
The quark-meson-coupling (QMC) model has been applied to the study of the properties of even-even su...
We determine ground-state and saddle-point shapes and masses of even-even superheavy nuclei in the r...
International audienceThe quark-meson coupling (QMC) model describes atomic nuclei on the basis of t...
International audienceThe quark-meson coupling (QMC) model describes atomic nuclei on the basis of t...
The quark-meson coupling (QMC) model describes atomic nuclei on the basis of the quark structure of ...
The results of extensive microscopic relativistic mean field (RMF) calculations for the nuclei appea...
We have carried out a study of superheavy nuclei in the framework of the relativistic mean-field the...
In this work, a new quark-meson coupling model is employed to study the ground-state properties of ...
In this work, a new quark-meson coupling model is employed to study the ground-state properties of a...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...
International audienceWe present a selection of the first results obtained in a comprehensive calcul...
International audienceWe present a selection of the first results obtained in a comprehensive calcul...
We present a selection of the first results obtained in a comprehensive calculation of ground state ...
International audienceThe quark-meson-coupling (QMC) model has been applied to the study of the prop...
The quark-meson-coupling (QMC) model has been applied to the study of the properties of even-even su...
We determine ground-state and saddle-point shapes and masses of even-even superheavy nuclei in the r...
International audienceThe quark-meson coupling (QMC) model describes atomic nuclei on the basis of t...
International audienceThe quark-meson coupling (QMC) model describes atomic nuclei on the basis of t...
The quark-meson coupling (QMC) model describes atomic nuclei on the basis of the quark structure of ...
The results of extensive microscopic relativistic mean field (RMF) calculations for the nuclei appea...
We have carried out a study of superheavy nuclei in the framework of the relativistic mean-field the...
In this work, a new quark-meson coupling model is employed to study the ground-state properties of ...
In this work, a new quark-meson coupling model is employed to study the ground-state properties of a...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...
A systematic study of global properties of superheavy nuclei in the framework of macroscopic-microsc...