International audienceCluster resonances in light heavy-ion systems like $^{12}$C+$^{12}$C and $^{12}$C+$^{16}$O may have a major impact on astrophysics stellar scenarios. Resonant radiative capture reactions have been studied for these systems at energies at and slightly below their Coulomb barriers to investigate the possible $^{12}$C-$^{12}$Cand $^{12}$C-$^{16}$O molecular origin of the resonances. Spins have been attributed to the resonances and specificities of their γ-decay have been identified. At deep sub-barrier energies, a fusion cross section measurement using the particle-γ coincidence technique is discussed for the $^{12}$C+$^{12}$C system. A new project is presented to possibly extend the $^{12}$C+$^{12}$C low-energy S factor ...
The 12C + 12C fusion reaction plays a critical role in the evolution of massive stars and also stron...
The 12C+12C reaction is one of the single most important nuclear reactions in astrophysics. It stron...
The 12C(α, γ)16O reaction plays a key role in the evolution of stars with masses of M > 0.55 M⊙. At ...
Cluster resonances in light heavy-ion systems like 12C+12C and 12C+16O may have a major impact on as...
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
[[abstract]]Heavy ion reactions in the sub-barrier region are of interest for the importance of 12C+...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
Since the discovery of molecular resonances in $^{12}$C+$^{12}$C in the early sixties a great deal o...
The 12C(α,γ)16O reaction plays a crucial role in stellar evolution. The rate of this reaction determ...
Since the discovery of molecular resonances in $$^{12}\hbox {C}+^{12}\hbox {C}$$ in the early sixtie...
The 12C(α,γ )16O reaction plays a crucial role in stellar evolution. The rate of this reaction deter...
The 12C(α, γ)16O reaction plays a key role in the evolution of stars with masses of M > 0.55 M⊙. At ...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
International audienceResonance phenomena in light heavy-ion collisions are experimentally well esta...
International audienceThis paper discusses how the radiative capture process can shed light on the o...
The 12C + 12C fusion reaction plays a critical role in the evolution of massive stars and also stron...
The 12C+12C reaction is one of the single most important nuclear reactions in astrophysics. It stron...
The 12C(α, γ)16O reaction plays a key role in the evolution of stars with masses of M > 0.55 M⊙. At ...
Cluster resonances in light heavy-ion systems like 12C+12C and 12C+16O may have a major impact on as...
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
[[abstract]]Heavy ion reactions in the sub-barrier region are of interest for the importance of 12C+...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
Since the discovery of molecular resonances in $^{12}$C+$^{12}$C in the early sixties a great deal o...
The 12C(α,γ)16O reaction plays a crucial role in stellar evolution. The rate of this reaction determ...
Since the discovery of molecular resonances in $$^{12}\hbox {C}+^{12}\hbox {C}$$ in the early sixtie...
The 12C(α,γ )16O reaction plays a crucial role in stellar evolution. The rate of this reaction deter...
The 12C(α, γ)16O reaction plays a key role in the evolution of stars with masses of M > 0.55 M⊙. At ...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
International audienceResonance phenomena in light heavy-ion collisions are experimentally well esta...
International audienceThis paper discusses how the radiative capture process can shed light on the o...
The 12C + 12C fusion reaction plays a critical role in the evolution of massive stars and also stron...
The 12C+12C reaction is one of the single most important nuclear reactions in astrophysics. It stron...
The 12C(α, γ)16O reaction plays a key role in the evolution of stars with masses of M > 0.55 M⊙. At ...