The calculations of the potential-energy surface are essential in the theoretical description of the fission process. In the constrained self-consistent approach, the smooth evolution of nuclear shape is described from the ground state until a very elongated one with a narrow neck. In all microscopic calculations, the rupture of the neck at scission is associated with a substantial change of nuclear matter density distribution and rapid energy decrease. In this paper, we show that there is no discontinuity of the potential-energy surface at scission when multiconstrained calculations are applied with the neck constraint. An early rupture of the neck at lower quadrupole and octupole moments is discussed as competitive with the conventional f...
In this work, an attempt has been made to explain the fission process in heavy nuclei. For the succe...
We define the optimal shape which fissioning nuclei attain just before the scission and calculate th...
The generation of sizable angular momenta in fragments formed in low-energy nuclear fission is descr...
The calculations of the potential-energy surface are essential in the theoretical description of the...
AbstractThe scission of a nucleus into two fragments is at present the least understood part of the ...
Just before a nucleus fissions a neck is formed between the emerging fission fragments. It is widely...
A microscopic potential is derived in correlation with the necking region within the fission-like sh...
AbstractWe defined the optimal shape which fissioning nuclei attain just before the scission and cal...
AbstractThe spontaneous fission of actinides is analysed by the macroscopic - microscopic method bas...
The present work is dedicated to a careful investigation of the influence of the potential energy su...
International audienceThe potential energy of heavy nuclei has been calculated in the quasimolecular...
The description of spontaneous fission of actinides by the macroscopic-microscopic method consisting...
Some figures may appear in colour only in the online journalThe potential energy surface of $^{240}$...
We present calculations based on a realistic theoretical model of the multi-dimensional potential-en...
In this work, an attempt has been made to explain the fission process in heavy nuclei. For the succe...
We define the optimal shape which fissioning nuclei attain just before the scission and calculate th...
The generation of sizable angular momenta in fragments formed in low-energy nuclear fission is descr...
The calculations of the potential-energy surface are essential in the theoretical description of the...
AbstractThe scission of a nucleus into two fragments is at present the least understood part of the ...
Just before a nucleus fissions a neck is formed between the emerging fission fragments. It is widely...
A microscopic potential is derived in correlation with the necking region within the fission-like sh...
AbstractWe defined the optimal shape which fissioning nuclei attain just before the scission and cal...
AbstractThe spontaneous fission of actinides is analysed by the macroscopic - microscopic method bas...
The present work is dedicated to a careful investigation of the influence of the potential energy su...
International audienceThe potential energy of heavy nuclei has been calculated in the quasimolecular...
The description of spontaneous fission of actinides by the macroscopic-microscopic method consisting...
Some figures may appear in colour only in the online journalThe potential energy surface of $^{240}$...
We present calculations based on a realistic theoretical model of the multi-dimensional potential-en...
In this work, an attempt has been made to explain the fission process in heavy nuclei. For the succe...
We define the optimal shape which fissioning nuclei attain just before the scission and calculate th...
The generation of sizable angular momenta in fragments formed in low-energy nuclear fission is descr...