We investigate the consequences of a new phenomenological model prediction of strongly reduced low-energy astrophysical S-factors for carbon and oxygen fusion reactions on stellar burning and nucleosynthesis. The new model drastically reduces the reaction rates in stellar matter at temperatures Tâ‰(3-10)à 108 K, especially at densities Ïâ‰109 g cm-3, in a strongly screened or even pycnonuclear burning regime. We show that these modifications change the abundance of many isotopes in massive late-type stars and in particular strongly enhance the abundances of long-lived radioactive isotopes such as Al26 and Fe60. The reduced reaction rates also significantly complicate carbon ignition (shift carbon ignition to higher temperatures and densitie...
The astrophysical origins of the heaviest stable elements that we observe today in the Solar System ...
We study the plasma correlation effects on nonresonant thermonuclear reactions of carbon and oxygen ...
The aim of this thesis is to investigate uncertainties in the input physics of stellar models that a...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
In recent years, new experimental determinations of numerous nuclear reaction rates relevant for ast...
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...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
International audienceCarbon burning is a critical phase for nucleosynthesis in massive stars. The c...
Accreting carbon-oxygen white dwarfs approaching the Chandrasekhar Mass may provide a substantial fr...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
We present a nucleosynthesis calculation of a 25 M-circle dot star of solar composition that include...
Over the last forty years, the 12C + 12C fusion reaction has been the subject of considerable experi...
The astrophysical origins of the heaviest stable elements that we observe today in the Solar System ...
We study the plasma correlation effects on nonresonant thermonuclear reactions of carbon and oxygen ...
The aim of this thesis is to investigate uncertainties in the input physics of stellar models that a...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
In recent years, new experimental determinations of numerous nuclear reaction rates relevant for ast...
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...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
International audienceCarbon burning is a critical phase for nucleosynthesis in massive stars. The c...
Accreting carbon-oxygen white dwarfs approaching the Chandrasekhar Mass may provide a substantial fr...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
We present a nucleosynthesis calculation of a 25 M-circle dot star of solar composition that include...
Over the last forty years, the 12C + 12C fusion reaction has been the subject of considerable experi...
The astrophysical origins of the heaviest stable elements that we observe today in the Solar System ...
We study the plasma correlation effects on nonresonant thermonuclear reactions of carbon and oxygen ...
The aim of this thesis is to investigate uncertainties in the input physics of stellar models that a...