Context. By changing the internal composition of stars, nuclear reactions play a key role in their evolution and spur their contribution to the chemical evolution of galaxies. The STELLA collaboration recently carried out new direct measurements of the 12C + 12C fusion cross section one of the key reactions occurring in C-burning regions in massive stars. Using a coincidence technique, accurate measurements were obtained for many different energies, with the lowest energy explored according to the Gamow window for massive stars. Aims. This work presents new 12C + 12C reaction rates in the form of numerical tables with associated uncertainty estimations, as well as analytical formulae that can be directly implemented into stellar evolution c...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
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...
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...
Over the last forty years, the 12C + 12C fusion reaction has been the subject of considerable experi...
Over the last 40 years, the 12C +12C fusion reaction has been the subject of considerable experiment...
In recent years, new experimental determinations of numerous nuclear reaction rates relevant for ast...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
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...
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...
Over the last forty years, the 12C + 12C fusion reaction has been the subject of considerable experi...
Over the last 40 years, the 12C +12C fusion reaction has been the subject of considerable experiment...
In recent years, new experimental determinations of numerous nuclear reaction rates relevant for ast...
Carbon burning is a critical phase for nucleosynthesis in massive stars. The conditions for igniting...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...