The parametrization D1M of the Gogny energy density functional is used to study fission in the odd-mass Uranium and Plutonium isotopes with $A=233, \ldots , 249$ within the framework of the Hartree-Fock-Bogoliubov (HFB) Equal Filling Approximation (EFA). Ground state quantum numbers and deformations, pairing energies, one-neutron separation energies, barrier heights and fission isomer excitation energies are given. Fission paths, collective masses and zero point rotational and vibrational quantum corrections are used to compute the systematic of the spontaneous fission half-lives $t_{SF}$, the masses and charges of the fission fragments as well as their intrinsic shapes. Although there exits a strong variance of the predicted fission rates ...
Background: For a long time, fission barriers of actinide nuclei have been mostly microscopically ca...
Background: Recent microscopic studies, based on the theoretical framework of nuclear energy density...
While a predictive, microscopic theory of nuclear fission has been elusive, advances in computationa...
Constrained mean-field calculations, based on the Gogny-D1M energy density functional, have been car...
The most recent parametrization D1M of the Gogny energy density functional is used to describe fissi...
The constrained Hartree–Fock–Bogoliubov approximation, based on the recent parametrization D1M$$^{*}...
Advanced theoretical methods and high-performance computers may finally unlock the secrets of nuclea...
The fission-fragment mass and total kinetic energy (TKE) distributions are evaluated in a quantum me...
The fission-fragment mass and total kinetic energy (TKE) distributions are evaluated in a quantum me...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
Eighty years after its experimental discovery, a description of induced nuclear fission based solely...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Background: For a long time, fission barriers of actinide nuclei have been mostly microscopically ca...
Background: Recent microscopic studies, based on the theoretical framework of nuclear energy density...
While a predictive, microscopic theory of nuclear fission has been elusive, advances in computationa...
Constrained mean-field calculations, based on the Gogny-D1M energy density functional, have been car...
The most recent parametrization D1M of the Gogny energy density functional is used to describe fissi...
The constrained Hartree–Fock–Bogoliubov approximation, based on the recent parametrization D1M$$^{*}...
Advanced theoretical methods and high-performance computers may finally unlock the secrets of nuclea...
The fission-fragment mass and total kinetic energy (TKE) distributions are evaluated in a quantum me...
The fission-fragment mass and total kinetic energy (TKE) distributions are evaluated in a quantum me...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
International audienceThe fission-fragment mass and total kinetic energy (TKE) distributions are eva...
Eighty years after its experimental discovery, a description of induced nuclear fission based solely...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Static and dynamic aspects of the fission process of 226Th are analyzed in a self-consistent framewo...
Background: For a long time, fission barriers of actinide nuclei have been mostly microscopically ca...
Background: Recent microscopic studies, based on the theoretical framework of nuclear energy density...
While a predictive, microscopic theory of nuclear fission has been elusive, advances in computationa...