International audienceWe propose a new method to extract the collective masses and momenta associated with a given set of collective coordinates, along a dynamical microscopic mean-field evolution. We apply our method to the symmetric fission of ^258Fm nucleus, and analyze the dynamical evolution of the system in the collective space. We compare, between the dynamical and the adiabatic paths, the force acting on the quadrupole degree of freedom, which is closely related to the relative distance between fragments. It is shown that dynamical effects beyond the adiabatic limit are important for formation and scission of the neck between emitted fragments
International audienceAmong the different theoretical approaches able to describe fission, microscop...
A realistic microscopically-based quantum approach to the competition between fusion and quasi-fissi...
5 pages, 4 figuresInternational audienceTheoretical description of nuclear fission remains one of th...
We propose a new method to extract the collective masses and momenta associated with a given set of ...
12 pages, 9 figuresInternational audienceGiven a set of collective variables, a method is proposed t...
Proceeding of the XXII Nuclear Physics Workshop, Kazimierz, 2015, PolandInternational audienceThe ti...
International audienceWe show that the total kinetic energy (TKE) of nuclei after the spontaneous fi...
Background: Studies of fission dynamics, based on nuclear energy density functionals, have shown tha...
The collective dynamics of low energy fission in 238U is described within a time-dependent formalism...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Collective mass tensors derived in the cranking approximation to the adiabatic time-dependent Hartre...
How the fission fragment angular momenta (FFAM) develop dynamically from nothing is a crucial issue ...
Background: Nuclear fission is a complex large-amplitude collective decay mode in heavy nuclei. Micr...
Among the different theoretical approaches able to describe fission, microscopic ones can help us in...
Background: Recent microscopic studies, based on the theoretical framework of nuclear energy density...
International audienceAmong the different theoretical approaches able to describe fission, microscop...
A realistic microscopically-based quantum approach to the competition between fusion and quasi-fissi...
5 pages, 4 figuresInternational audienceTheoretical description of nuclear fission remains one of th...
We propose a new method to extract the collective masses and momenta associated with a given set of ...
12 pages, 9 figuresInternational audienceGiven a set of collective variables, a method is proposed t...
Proceeding of the XXII Nuclear Physics Workshop, Kazimierz, 2015, PolandInternational audienceThe ti...
International audienceWe show that the total kinetic energy (TKE) of nuclei after the spontaneous fi...
Background: Studies of fission dynamics, based on nuclear energy density functionals, have shown tha...
The collective dynamics of low energy fission in 238U is described within a time-dependent formalism...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Collective mass tensors derived in the cranking approximation to the adiabatic time-dependent Hartre...
How the fission fragment angular momenta (FFAM) develop dynamically from nothing is a crucial issue ...
Background: Nuclear fission is a complex large-amplitude collective decay mode in heavy nuclei. Micr...
Among the different theoretical approaches able to describe fission, microscopic ones can help us in...
Background: Recent microscopic studies, based on the theoretical framework of nuclear energy density...
International audienceAmong the different theoretical approaches able to describe fission, microscop...
A realistic microscopically-based quantum approach to the competition between fusion and quasi-fissi...
5 pages, 4 figuresInternational audienceTheoretical description of nuclear fission remains one of th...