The intrinsic energy partition between two complementary fission fragments is investigated microscopically. The intrinsic excitation energy of fission fragments is dynamically evaluated in terms of the time-dependent pairing equations. These equations are corroborated with two conditions. One of them fixes the number of particles and the other separates the pairing active spaces associated to the two fragments in the vicinity of the scission configuration. The excitation energy in a wide distribution of fission fragments is calculated for the 234U parent nucleus
We apply the four-dimensional Langevin approach to the description of fission of 235U by neutrons an...
In the frame of refined prompt-neutron emission models used for evaluation purposes the partition of...
A quantitative definition of scission points occurring in a fission process at low energy (spontaneo...
AbstractThe intrinsic excitation energy of fission fragments is dynamically evaluated in terms of th...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
A method of total excitation energy (TXE) partition between fully-accelerated fission fragments base...
The partition between the light (L) and the heavy (H) fission fragments of the excitation energy ava...
We present a model which allows for the calculation of fragment excitation and kinetic energy in nu...
We apply the four-dimensional Langevin approach to the description of fission of 235U by neutrons an...
In the frame of refined prompt-neutron emission models used for evaluation purposes the partition of...
A quantitative definition of scission points occurring in a fission process at low energy (spontaneo...
AbstractThe intrinsic excitation energy of fission fragments is dynamically evaluated in terms of th...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
We study how the excitation energy of the fully accelerated fission fragments is built up. It is str...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
The transformation of an atomic nucleus into two excited fission fragments is modeled as a strongly ...
A method of total excitation energy (TXE) partition between fully-accelerated fission fragments base...
The partition between the light (L) and the heavy (H) fission fragments of the excitation energy ava...
We present a model which allows for the calculation of fragment excitation and kinetic energy in nu...
We apply the four-dimensional Langevin approach to the description of fission of 235U by neutrons an...
In the frame of refined prompt-neutron emission models used for evaluation purposes the partition of...
A quantitative definition of scission points occurring in a fission process at low energy (spontaneo...