The fusion excitation function of 60 Ni + 100 Mo has been measured from above the Coulomb barrier down to a cross section around 2 μb, looking for coupling and hindrance effects in this soft medium-mass system with positive Q-values for several neutron transfer channels. A comparison is made with previous results for 64 Ni + 100 Mo where no Q > 0 transfer channels exist and the hindrance effect is quite clear. The two excitation functions are very similar, as well as the corresponding logarithmic derivatives showing analogous saturations below the barrier. It appears that transfer couplings to Q > 0 channels seem to play a marginal role near and below the barrier for 60 Ni + 100 Mo , even if measurements of cross sections lower than 1 μb wo...
The argument of this thesis is the measurement of deep sub-barrier fusion cross sections for 58Ni +6...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...
The fusion excitation function of 60Ni + 100Mo has been measured from above the Coulomb barrier down...
The fusion excitation function of Ni-60 + Mo-100 has been measured from above the Coulomb barrier do...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn level, looking for hin...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn lev...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn lev...
The fusion cross section of Ni-60 + Mo-100 has been measured down to microbarn level, looking for hi...
The fusion cross section of Ni-60 + Mo-100 has been measured down to microbarn level, looking for hi...
In order to better understand the influence of transfer in sub-barrier nuclear reactions, cross sect...
In order to better understand the influence of transfer in sub-barrier nuclear reactions, cross sect...
The argument of this thesis is the measurement of deep sub-barrier fusion cross sections for 58Ni +6...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...
The fusion excitation function of 60Ni + 100Mo has been measured from above the Coulomb barrier down...
The fusion excitation function of Ni-60 + Mo-100 has been measured from above the Coulomb barrier do...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn level, looking for hin...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
58Ni +64Ni is the first case where the influence of positive Q-value transfer channels on sub-barrie...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn lev...
The fusion cross section of 60Ni + 100Mo has been measured down to microbarn lev...
The fusion cross section of Ni-60 + Mo-100 has been measured down to microbarn level, looking for hi...
The fusion cross section of Ni-60 + Mo-100 has been measured down to microbarn level, looking for hi...
In order to better understand the influence of transfer in sub-barrier nuclear reactions, cross sect...
In order to better understand the influence of transfer in sub-barrier nuclear reactions, cross sect...
The argument of this thesis is the measurement of deep sub-barrier fusion cross sections for 58Ni +6...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...
International audience58 Ni + 64 Ni is the first case where the influence of positive Q-value transf...