Accurate assessment of the value of the incompressibility coefficient, K, of symmetric nuclear matter, which is directly related to the curvature of the equation of state (EOS), is needed to extend our knowledge of the EOS in the vicinity of the saturation point. We review the current status of K as determined from experimental data on isoscalar giant monopole and dipole resonances (compression modes) in nuclei, by employing the microscopic theory based on the random-phase approximation (RPA)
We present results of microscopic calculations of the strength function, S(E), and alpha-particle ex...
PTHThe study of the isoscalar giant monopole resonance (ISGMR) should allow extracting a value for t...
Using the relativistic Hartree approximation in the sigma-omega model we study the isoscalar giant m...
The equation of state (EOS) of nuclear matter is a very important ingredient in the study of nuclear...
Accurate assessment of the value of the incompressibility coefficient, K-infinity of symmetric nucle...
Accurate assessment of the value of the incompressibility coefficient, K, of symmetric nuclear matte...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
10 pages, 8 figuresThe measurements of the isoscalar giant monopole resonance (GMR), also called the...
We systematically analyze the recent claim that nonrelativistic and relativistic mean field (RMF) ba...
The relativistic mean-field plus random phase and quasiparticle random phase approximation calculati...
The compression-mode giant resonances, namely the isoscalar giant monopole and isoscalar giant dipol...
Using data on elliptic flow measured by the FOPI collaboration we extract constraints for the equati...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
We explore the ability of the recently established quasilocal density functional theory for describi...
We present an analysis based on the deformed Quasi Particle Random Phase Approximation, on top of a ...
We present results of microscopic calculations of the strength function, S(E), and alpha-particle ex...
PTHThe study of the isoscalar giant monopole resonance (ISGMR) should allow extracting a value for t...
Using the relativistic Hartree approximation in the sigma-omega model we study the isoscalar giant m...
The equation of state (EOS) of nuclear matter is a very important ingredient in the study of nuclear...
Accurate assessment of the value of the incompressibility coefficient, K-infinity of symmetric nucle...
Accurate assessment of the value of the incompressibility coefficient, K, of symmetric nuclear matte...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
10 pages, 8 figuresThe measurements of the isoscalar giant monopole resonance (GMR), also called the...
We systematically analyze the recent claim that nonrelativistic and relativistic mean field (RMF) ba...
The relativistic mean-field plus random phase and quasiparticle random phase approximation calculati...
The compression-mode giant resonances, namely the isoscalar giant monopole and isoscalar giant dipol...
Using data on elliptic flow measured by the FOPI collaboration we extract constraints for the equati...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
We explore the ability of the recently established quasilocal density functional theory for describi...
We present an analysis based on the deformed Quasi Particle Random Phase Approximation, on top of a ...
We present results of microscopic calculations of the strength function, S(E), and alpha-particle ex...
PTHThe study of the isoscalar giant monopole resonance (ISGMR) should allow extracting a value for t...
Using the relativistic Hartree approximation in the sigma-omega model we study the isoscalar giant m...