The saturation properties of neutron-rich matter are investigated in a relativistic mean-field formalism using two accurately calibrated models: NL3 and FSUGold. The saturation properties density, binding energy per nucleon, and incompressibility coefficient are calculated as a function of the neutron-proton asymmetry α≡(N-Z)/A to all orders in α. Good agreement (at the 10% level or better) is found between these numerical calculations and analytic expansions that are given in terms of a handful of bulk parameters determined at saturation density. Using insights developed from the analytic approach and a general expression for the incompressibility coefficient of infinite neutron-rich matter, i.e., K0(α)=K0+Kτα2+ , we construct a hybrid mod...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
International audienceWe have extended the compressible liquid-drop model with a density-dependent s...
By using the scaling method and the Thomas-Fermi and extended Thomas-Fermi approaches to relativisti...
The saturation properties of neutron-rich matter are investigated in a relativistic mean-field forma...
Accurate assessment of the value of the incompressibility coefficient, K, of symmetric nuclear matte...
The relativistic mean-field plus random phase and quasiparticle random phase approximation calculati...
5 pagesInternational audienceNuclei are propitious tools to investigate the role of the superfluidit...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
Using 250 neutron star merger simulations with microphysics, we explore for the first time the role ...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
The incompressibility of finite fermionic systems is investigated using analytical approaches and mi...
Journals published by the American Physical Society can be found at http://publish.aps.org/Analytica...
International audienceIn this contribution we will review our present understanding of the matter eq...
The density dependence of the symmetry energy around saturation density, characterized by the slope ...
We address the question of the role of low-energy nuclear physics data in constraining neutron star ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
International audienceWe have extended the compressible liquid-drop model with a density-dependent s...
By using the scaling method and the Thomas-Fermi and extended Thomas-Fermi approaches to relativisti...
The saturation properties of neutron-rich matter are investigated in a relativistic mean-field forma...
Accurate assessment of the value of the incompressibility coefficient, K, of symmetric nuclear matte...
The relativistic mean-field plus random phase and quasiparticle random phase approximation calculati...
5 pagesInternational audienceNuclei are propitious tools to investigate the role of the superfluidit...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
Using 250 neutron star merger simulations with microphysics, we explore for the first time the role ...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
The incompressibility of finite fermionic systems is investigated using analytical approaches and mi...
Journals published by the American Physical Society can be found at http://publish.aps.org/Analytica...
International audienceIn this contribution we will review our present understanding of the matter eq...
The density dependence of the symmetry energy around saturation density, characterized by the slope ...
We address the question of the role of low-energy nuclear physics data in constraining neutron star ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
International audienceWe have extended the compressible liquid-drop model with a density-dependent s...
By using the scaling method and the Thomas-Fermi and extended Thomas-Fermi approaches to relativisti...