Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting this burning stage, and the subsequent isotope composition of the resulting ashes, depend strongly on the reaction rate for C12+C12 fusion at very low energies. Results for the cross sections for this reaction are influenced by various backgrounds encountered in measurements at such energies. In this paper, we report on a new measurement of C12+C12 fusion cross sections where these backgrounds have been minimized. It is found that the astrophysical S factor exhibits a maximum around Ecm=3.5-4.0 MeV, which leads to a reduction of the previously predicted astrophysical reaction rate
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
International audienceCarbon burning is a critical phase for nucleosynthesis in massive stars. The c...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
The C12+C12 fusion reaction plays a critical role in the evolution of massive stars and also strongl...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
The C12+C12 fusion reaction plays a critical role in the evolution of massive stars and also strongl...
International audienceContext. By changing the internal composition of stars, nuclear reactions play...
International audienceContext. By changing the internal composition of stars, nuclear reactions play...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
International audienceCarbon burning is a critical phase for nucleosynthesis in massive stars. The c...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
The C12+C12 fusion reaction plays a critical role in the evolution of massive stars and also strongl...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
The C12+C12 fusion reaction plays a critical role in the evolution of massive stars and also strongl...
International audienceContext. By changing the internal composition of stars, nuclear reactions play...
International audienceContext. By changing the internal composition of stars, nuclear reactions play...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...
Among the reactions driving stellar evolution during carbon burning, 12C + 12C fusion provides the k...