The radiative capture reaction 12C(α,γ )16O has been investigated in the energy range E = 3.3 to 4.5 MeV. This experiment focused in particular on the cascade transition to the 0+ state at Ex = 6.05 MeV in 16O and was performed by detecting the capture γ -rays with a NaI detector array at the windowless 4He gas target of the recoil mass separator ERNA in coincidence with the 16O ejectiles. The 6.05 MeV transition has been considered recently as a component accounting for up to 15% of the 12C(α,γ )16O total cross section at astrophysical energies. The arrangement of the detector array yielded additional information on the γ -ray multipolarity, i.e. the ratio σE2/σE1, and it was found that the 6.05 MeV transition is entirely E2 in the ...
The shape of the low-energy part of the β-delayed α-particle spectrum of 16N is very sensitive to th...
The reaction 12C(α, γ)16O plays a key role in determining the C/O ratio in the stellar core at the e...
The radiative capture cross sections of 12C(α,γ)16O and derived reaction rates are calculated from t...
The radiative capture reaction View the MathML source has been investigated in the energy range E=3....
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
Radiative alpha-capture by ^(12)C is a key process occurring during the helium-burning phase in red ...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
International audienceThe 12C(alpha,gamma)16O reaction plays an important role in helium burning in ...
The 12C(α,γ)16O reaction plays a crucial role in stellar evolution. The rate of this reaction determ...
The cross section for the reaction ^(12)C(α, γ)^(16)O has been measured for a range of c.m. energies...
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 evolut...
The El amplitude of the transition to the ground state in the 12C(α,γ0)16O capture reaction was meas...
The shape of the low-energy part of the β-delayed α-particle spectrum of 16N is very sensitive to th...
The reaction 12C(α, γ)16O plays a key role in determining the C/O ratio in the stellar core at the e...
The radiative capture cross sections of 12C(α,γ)16O and derived reaction rates are calculated from t...
The radiative capture reaction View the MathML source has been investigated in the energy range E=3....
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
Radiative alpha-capture by ^(12)C is a key process occurring during the helium-burning phase in red ...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
International audienceThe 12C(alpha,gamma)16O reaction plays an important role in helium burning in ...
The 12C(α,γ)16O reaction plays a crucial role in stellar evolution. The rate of this reaction determ...
The cross section for the reaction ^(12)C(α, γ)^(16)O has been measured for a range of c.m. energies...
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 evolut...
The El amplitude of the transition to the ground state in the 12C(α,γ0)16O capture reaction was meas...
The shape of the low-energy part of the β-delayed α-particle spectrum of 16N is very sensitive to th...
The reaction 12C(α, γ)16O plays a key role in determining the C/O ratio in the stellar core at the e...
The radiative capture cross sections of 12C(α,γ)16O and derived reaction rates are calculated from t...