High-energy $$\gamma $$ rays are emitted either in the decay of nuclear discrete states (generally located in the proximity of the particle-emission threshold) or in the electromagnetic decay of collective states. The branching ratio is rather small, therefore in alternative/coincidence with high-energy $$\gamma $$ rays one could have neutron or charged-particle emission. The precise measurement of these branching ratios allows a more comprehensive description of the nucleus and, in particular, the selection of the nuclear models which better describes the interplay between the different acting forces and couplings. In the case of the electromagnetic decay of collective states, the precise identification of the populated low-lying states al...
New accelerator facilities for radioactive-ion beams and high-intensity stable beams will start oper...
Each major technical advance in gamma-ray detection devices has resulted in significant new insights...
The study of the collective properties of a nuclear system is a powerful tool to understand the stru...
High-energy $$\gamma $$ rays are emitted either in the decay of nuclear discrete states (generally l...
International audienceIn recent decades, $\gamma $-ray spectroscopy has undergone a major technologi...
The Advanced GAmma Tracking Array (AGATA), the new generation high-resolution γ-ray spectrometer, ha...
High-resolution gamma-ray spectroscopy is one of the most powerful and sensitive tools to investigat...
Gamma-ray spectroscopy is an essential tool in the study of nuclear phenomenon. The study of exotic ...
A European project is currently underway to construct nuclear physics instrumentation in the form of...
International audienceThe Advanced Gamma Tracking Array, AGATA, is presently in its construction pha...
Nuclear-structure studies using fusion reactions are reviewed in terms of prospects for advancement ...
An experiment aiming at the study of the gamma decay from the Giant Resonance region in the nuclei 2...
New accelerator facilities for radioactive-ion beams and high-intensity stable beams will start oper...
Each major technical advance in gamma-ray detection devices has resulted in significant new insights...
The study of the collective properties of a nuclear system is a powerful tool to understand the stru...
High-energy $$\gamma $$ rays are emitted either in the decay of nuclear discrete states (generally l...
International audienceIn recent decades, $\gamma $-ray spectroscopy has undergone a major technologi...
The Advanced GAmma Tracking Array (AGATA), the new generation high-resolution γ-ray spectrometer, ha...
High-resolution gamma-ray spectroscopy is one of the most powerful and sensitive tools to investigat...
Gamma-ray spectroscopy is an essential tool in the study of nuclear phenomenon. The study of exotic ...
A European project is currently underway to construct nuclear physics instrumentation in the form of...
International audienceThe Advanced Gamma Tracking Array, AGATA, is presently in its construction pha...
Nuclear-structure studies using fusion reactions are reviewed in terms of prospects for advancement ...
An experiment aiming at the study of the gamma decay from the Giant Resonance region in the nuclei 2...
New accelerator facilities for radioactive-ion beams and high-intensity stable beams will start oper...
Each major technical advance in gamma-ray detection devices has resulted in significant new insights...
The study of the collective properties of a nuclear system is a powerful tool to understand the stru...