Accurate knowledge of fission fragment yields is an essential ingredient of numerous applications ranging from the formation of elements in the r-process to fuel cycle optimization in nuclear energy. The need for a predictive theory applicable where no data is available, together with the variety of potential applications, is an incentive to develop a fully microscopic approach to fission dynamics. One of the most promising theoretical frameworks is the time dependent generator coordinate method (TDGCM) applied under the Gaussian overlap approximation (GOA). However, the computational cost of this method makes it difficult to perform calculations with more than two collective degree of freedom. Meanwhile, it is well-known from both semi-phe...
Collective mass tensors derived in the cranking approximation to the adiabatic time-dependent Hartre...
Nuclear fission, where an atomic nucleus separates into two fragments while emitting a large amount ...
International audienceThe time-dependent generator coordinate method (TDGCM) is a powerful method to...
Accurate knowledge of fission fragment yields is an essential ingredient of numerous applications ra...
Accurate knowledge of fission fragment yields is an essential ingredient of numerous applications ra...
Dynamical description of low energy fission is, in our full microscopic approach, decomposed in two ...
Low-energy positive and negative parity collective states in the equilibrium minimum, and the dynami...
Starting from a quantum theory of dissipation for nuclear collective motion, the time-dependent gene...
The non-perturbative method to compute Adiabatic Time Dependent Hartree Fock Bogoliubov (ATDHFB) col...
The collective dynamics of low energy fission in 238U is described within a time-dependent formalism...
International audienceAmong the different theoretical approaches able to describe fission, microscop...
The dynamics of induced fission of 226Th is investigated in a theoretical framework based on the fin...
Among the different theoretical approaches able to describe fission, microscopic ones can help us in...
International audienceThe emergence of collective behaviors as well as the existence of large amplit...
Collective mass tensors derived in the cranking approximation to the adiabatic time-dependent Hartre...
Nuclear fission, where an atomic nucleus separates into two fragments while emitting a large amount ...
International audienceThe time-dependent generator coordinate method (TDGCM) is a powerful method to...
Accurate knowledge of fission fragment yields is an essential ingredient of numerous applications ra...
Accurate knowledge of fission fragment yields is an essential ingredient of numerous applications ra...
Dynamical description of low energy fission is, in our full microscopic approach, decomposed in two ...
Low-energy positive and negative parity collective states in the equilibrium minimum, and the dynami...
Starting from a quantum theory of dissipation for nuclear collective motion, the time-dependent gene...
The non-perturbative method to compute Adiabatic Time Dependent Hartree Fock Bogoliubov (ATDHFB) col...
The collective dynamics of low energy fission in 238U is described within a time-dependent formalism...
International audienceAmong the different theoretical approaches able to describe fission, microscop...
The dynamics of induced fission of 226Th is investigated in a theoretical framework based on the fin...
Among the different theoretical approaches able to describe fission, microscopic ones can help us in...
International audienceThe emergence of collective behaviors as well as the existence of large amplit...
Collective mass tensors derived in the cranking approximation to the adiabatic time-dependent Hartre...
Nuclear fission, where an atomic nucleus separates into two fragments while emitting a large amount ...
International audienceThe time-dependent generator coordinate method (TDGCM) is a powerful method to...