A double-folding method is used to calculate the nuclear and Coulomb interaction between two deformed nuclei with arbitrary orientations. A simplified Skryme-type interaction is adopted. The contributions of the nuclear and Coulomb interactions due to the deformation and orientation of the nuclei are evaluated for the driving potential used in the description of heavy-ion fusion reaction. So far there is no satisfactory theory to describe the evolution of the dynamical nuclear deformation and orientations during the heavy-ion fusion process. Our results estimate the magnitude of the above effects
In this work we analyse fusion cross-section (σF ) in different projectile target systems. Collisio...
The usual treatment of the deformed optical model for analysis of heavy ion induced inelastic scatte...
The proximity potential is discussed for the inelastic scattering of a spherical nucleus on a deform...
Within the dinuclear system model, the effects of the relative orientations of interacting deformed ...
Abstract—It is shown that the height of the barrier and its position, as well the depth of the captu...
We obtained theoretical fusion cross sections based on a new and accurate procedure to calculate the...
A detailed understanding of complete fusion cross sections in heavy-ion collisions requires a consid...
590-595Applying twelve different versions of nuclear potentials, the influence of static quadrupole ...
A classical rigid-body dynamics model which takes into account all the translational and the rotatio...
The double-folding model with an M3Y effective nucleon-nucleon (NN) interaction was applied to obtai...
We consider the approaching stage of fusion-fission reactions. The state of the total system is char...
AbstractA method is presented to calculate the exact HI Coulomb potential between spherical and defo...
Potential energies, moments of inertia, quadrupole and octupole moments of dinuclear systems are com...
A double folding method with simplified Skyreme-type nucleon-nucleon interaction is used to calculat...
The time-dependent transition between a diabatic interaction potential in the entrance channel and a...
In this work we analyse fusion cross-section (σF ) in different projectile target systems. Collisio...
The usual treatment of the deformed optical model for analysis of heavy ion induced inelastic scatte...
The proximity potential is discussed for the inelastic scattering of a spherical nucleus on a deform...
Within the dinuclear system model, the effects of the relative orientations of interacting deformed ...
Abstract—It is shown that the height of the barrier and its position, as well the depth of the captu...
We obtained theoretical fusion cross sections based on a new and accurate procedure to calculate the...
A detailed understanding of complete fusion cross sections in heavy-ion collisions requires a consid...
590-595Applying twelve different versions of nuclear potentials, the influence of static quadrupole ...
A classical rigid-body dynamics model which takes into account all the translational and the rotatio...
The double-folding model with an M3Y effective nucleon-nucleon (NN) interaction was applied to obtai...
We consider the approaching stage of fusion-fission reactions. The state of the total system is char...
AbstractA method is presented to calculate the exact HI Coulomb potential between spherical and defo...
Potential energies, moments of inertia, quadrupole and octupole moments of dinuclear systems are com...
A double folding method with simplified Skyreme-type nucleon-nucleon interaction is used to calculat...
The time-dependent transition between a diabatic interaction potential in the entrance channel and a...
In this work we analyse fusion cross-section (σF ) in different projectile target systems. Collisio...
The usual treatment of the deformed optical model for analysis of heavy ion induced inelastic scatte...
The proximity potential is discussed for the inelastic scattering of a spherical nucleus on a deform...