Using a collective potential derived previously on the basis of the generator coordinate method with Skyrme interactions, we obtain values for the compression modulus of Ca-40 which are in good agreement with a recently obtained experimental value. Calculated values for the compression modulus for O-16 are also given. The procedure involved in the derivation of the collective potential is briefly reviewed and discussed
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
Two recent studies of the evolution of the isoscalar giant monopole resonance (ISGMR) within the cal...
The main characteristics of the ground and, in particular, the first excited monopole state in the $...
The systematics of data on the giant monopole resonance in nuclei is reviewed. The results on the mo...
The study of the isoscalar giant monopole resonance (GMR) is important because its energy, EGMR = (m...
A study of the systematics of the breathing mode giant monopole resonance in the isotopic chains of ...
Background:Average energies of nuclear collective modes may be efficiently and accurately computed u...
10 pages, 8 figuresThe measurements of the isoscalar giant monopole resonance (GMR), also called the...
In the last few years one of the most exciting phenomena in nuclear physics has been the observation...
We explore the ability of the recently established quasilocal density functional theory for describi...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
Journals published by the American Physical Society can be found at http://publish.aps.org/The giant...
The isoscalar giant monopole resonance (GMR) in Samarium isotopes (from spherical 144Sm to deformed ...
The compression-mode giant resonances, namely the isoscalar giant monopole and isoscalar giant dipol...
10 pages, 8 figuresCollective monopole vibrations are studied in the framework of antisymmetrized ve...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
Two recent studies of the evolution of the isoscalar giant monopole resonance (ISGMR) within the cal...
The main characteristics of the ground and, in particular, the first excited monopole state in the $...
The systematics of data on the giant monopole resonance in nuclei is reviewed. The results on the mo...
The study of the isoscalar giant monopole resonance (GMR) is important because its energy, EGMR = (m...
A study of the systematics of the breathing mode giant monopole resonance in the isotopic chains of ...
Background:Average energies of nuclear collective modes may be efficiently and accurately computed u...
10 pages, 8 figuresThe measurements of the isoscalar giant monopole resonance (GMR), also called the...
In the last few years one of the most exciting phenomena in nuclear physics has been the observation...
We explore the ability of the recently established quasilocal density functional theory for describi...
Isoscalar dipole strength distributions in spherical medium- and heavy-mass nuclei are calculated wi...
Journals published by the American Physical Society can be found at http://publish.aps.org/The giant...
The isoscalar giant monopole resonance (GMR) in Samarium isotopes (from spherical 144Sm to deformed ...
The compression-mode giant resonances, namely the isoscalar giant monopole and isoscalar giant dipol...
10 pages, 8 figuresCollective monopole vibrations are studied in the framework of antisymmetrized ve...
The incompressibility (compression modulus) K0 of infinite symmetric nuclear matter at saturation de...
Two recent studies of the evolution of the isoscalar giant monopole resonance (ISGMR) within the cal...
The main characteristics of the ground and, in particular, the first excited monopole state in the $...