A systematic study of the effect of fragment$-$fragment interaction, quantum statistics, $\gamma$-feeding and collective flow is made in the extraction of the nuclear temperature from the double ratio of the isotopic yields in the statistical model of one-step (Prompt) multifragmentation. Temperature is also extracted from the isotope yield ratios generated in the sequential binary-decay model. Comparison of the thermodynamic temperature with the extracted temperatures for different isotope ratios show some anomaly in both models which is discussed in the context of experimentally measured caloric curves
Within the statistical multifragmentation model we study modifications of the surface and symmetry e...
An exact analytical solution of the statistical multifragmentation model is found in thermodynamic l...
Ratios of differential chemical potential values relative to the temperature, $({\ensuremath{\mu}}_{...
A systematic comparison of different isotopic temperatures with the thermodynamical temperature of a...
The agreement between the fragments’ internal and kinetic temperatures with the breakup temperature ...
The systematic data set on isotopic effects in spectator fragmentation collected recently at the GSI...
It is shown that the chemical equilibrium condition of the system can be unambiguously identified by...
The A/Z dependence of projectile fragmentation at relativistic energies has been studied with the AL...
Producing rare isotopes through statistical multifragmentation is investigated using the Mekjian met...
AbstractWe investigate the possibility, in nuclear fragmentation, to extract information on nuclear ...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
Isotopic effects in spectator fragmentations following heavy-ion collisions at relativistic energies...
The thermal and phase properties of a multifragmentation model which uses clusters as degrees of fre...
This contribution presents a review of our present theoretical as well as experimental knowledge of ...
In multifragmentation of hot nuclear matter, properties of fragments embedded in a soup of nucleonic...
Within the statistical multifragmentation model we study modifications of the surface and symmetry e...
An exact analytical solution of the statistical multifragmentation model is found in thermodynamic l...
Ratios of differential chemical potential values relative to the temperature, $({\ensuremath{\mu}}_{...
A systematic comparison of different isotopic temperatures with the thermodynamical temperature of a...
The agreement between the fragments’ internal and kinetic temperatures with the breakup temperature ...
The systematic data set on isotopic effects in spectator fragmentation collected recently at the GSI...
It is shown that the chemical equilibrium condition of the system can be unambiguously identified by...
The A/Z dependence of projectile fragmentation at relativistic energies has been studied with the AL...
Producing rare isotopes through statistical multifragmentation is investigated using the Mekjian met...
AbstractWe investigate the possibility, in nuclear fragmentation, to extract information on nuclear ...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
Isotopic effects in spectator fragmentations following heavy-ion collisions at relativistic energies...
The thermal and phase properties of a multifragmentation model which uses clusters as degrees of fre...
This contribution presents a review of our present theoretical as well as experimental knowledge of ...
In multifragmentation of hot nuclear matter, properties of fragments embedded in a soup of nucleonic...
Within the statistical multifragmentation model we study modifications of the surface and symmetry e...
An exact analytical solution of the statistical multifragmentation model is found in thermodynamic l...
Ratios of differential chemical potential values relative to the temperature, $({\ensuremath{\mu}}_{...