This paper presents the ongoing analysis of two fission experiments. Both projects are part of the collaboration between the nuclear reactions group at Uppsala and the JRC-IRMM. The first experiment deals with the prompt fission neutron multiplicity in the thermal neutron induced fission of U-235(n,f). The second, on the fission fragment properties in the thermal fission of U-234(n,f). The prompt fission neutron multiplicity has been measured at the JRC-IRMM using two liquid scintillators in coincidence with an ionization chamber. The first experimental campaign focused on U-235(nth,f) whereas a second experimental campaign is foreseen later for the same reaction at 5.5 MeV. The goal is to investigate how the so-called saw-tooth shape chang...
AbstractFor nuclear modeling and improved evaluation of nuclear data knowledge about fluctuations of...
Investigations of prompt fission neutron (PFN) emission are of importance in understanding the fissi...
Neutron-induced fission has been studied at different excitation energies of the compound nucleus by...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
Background: The sharing of excitation energy between the fission fragments is one of the key issues ...
The aim of the present work was to obtain experimental data on the incident neutron energy dependenc...
The prompt neutron emission in thermal neutron induced fission of 235U and spontaneous fission of 25...
The nuclear de-excitation process of fission fragments (FF) provides fundamental information for the...
The fission fragment properties of 234U(n,f) were investigated as a function of incident neutron ene...
Investigations of prompt emission in fission is of importance in understanding the fission process i...
Recent experimental investigations on major and minor actinides at the JRC-IRMM are presented. Fissi...
AbstractFor nuclear modeling and improved evaluation of nuclear data knowledge about fluctuations of...
Investigations of prompt fission neutron (PFN) emission are of importance in understanding the fissi...
Neutron-induced fission has been studied at different excitation energies of the compound nucleus by...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
This paper presents the ongoing analysis of two fission experiments. Both projects are part of the c...
Background: The sharing of excitation energy between the fission fragments is one of the key issues ...
The aim of the present work was to obtain experimental data on the incident neutron energy dependenc...
The prompt neutron emission in thermal neutron induced fission of 235U and spontaneous fission of 25...
The nuclear de-excitation process of fission fragments (FF) provides fundamental information for the...
The fission fragment properties of 234U(n,f) were investigated as a function of incident neutron ene...
Investigations of prompt emission in fission is of importance in understanding the fission process i...
Recent experimental investigations on major and minor actinides at the JRC-IRMM are presented. Fissi...
AbstractFor nuclear modeling and improved evaluation of nuclear data knowledge about fluctuations of...
Investigations of prompt fission neutron (PFN) emission are of importance in understanding the fissi...
Neutron-induced fission has been studied at different excitation energies of the compound nucleus by...