We analyze thermonuclear and pycnonuclear fusion reactions in dense matter containing atomic nuclei of different types. We extend a phenomenological expression for the reaction rate, proposed recently by Gasques [Phys. Rev. C 72, 025806 (2005)] for the one-component plasma of nuclei, to the multicomponent plasma. The expression contains several fit parameters which we adjust to reproduce the best microscopic calculations available in the literature. Furthermore, we show that pycnonuclear burning is drastically affected by an (unknown) structure of the multicomponent matter (a regular lattice, a uniform mix, etc.). We apply the results to study nuclear burning in a 12C-16O mixture. In this context, we present new calculations of the astrophy...
International audienceWe introduce two simplified nuclear networks that can be used in hydrostatic c...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
We analyze thermonuclear and pycnonuclear fusion reactions in dense matter containing atomic nuclei ...
We study the plasma correlation effects on nonresonant thermonuclear reactions of carbon and oxygen ...
Using the Sao Paulo potential and the barrier penetration formalism we have calculated the astrophys...
Includes bibliographical references (p. 35-36).The goal of this research is to explore the nuclear f...
We analyze thermonuclear and pycnonuclear reaction rates in multi-component dense stellar plasma. Fi...
We review in some detail, the so-called triple-α process and the reaction ^(12)C(α,γα,γ)^(16)O that ...
We discuss the types of thermonuclear reactions that are of importance to stellar evolution and nucl...
We investigate the consequences of a new phenomenological model prediction of strongly reduced low-e...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
We investigate the possibility of gaining energy from nuclear fusion reactions using differ-ent mixt...
Nucleosynthesis in stars and stellar explosions proceeds via nuclear reactions in thermalized plasma...
In this study, we examine the cross sections of O-18,O-19,O-20 + C-12 fusion reactions at energies n...
International audienceWe introduce two simplified nuclear networks that can be used in hydrostatic c...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...
We analyze thermonuclear and pycnonuclear fusion reactions in dense matter containing atomic nuclei ...
We study the plasma correlation effects on nonresonant thermonuclear reactions of carbon and oxygen ...
Using the Sao Paulo potential and the barrier penetration formalism we have calculated the astrophys...
Includes bibliographical references (p. 35-36).The goal of this research is to explore the nuclear f...
We analyze thermonuclear and pycnonuclear reaction rates in multi-component dense stellar plasma. Fi...
We review in some detail, the so-called triple-α process and the reaction ^(12)C(α,γα,γ)^(16)O that ...
We discuss the types of thermonuclear reactions that are of importance to stellar evolution and nucl...
We investigate the consequences of a new phenomenological model prediction of strongly reduced low-e...
The 12C + 12C fusion reaction is one of the most important reactions in the stellar evolution. Due t...
We investigate the possibility of gaining energy from nuclear fusion reactions using differ-ent mixt...
Nucleosynthesis in stars and stellar explosions proceeds via nuclear reactions in thermalized plasma...
In this study, we examine the cross sections of O-18,O-19,O-20 + C-12 fusion reactions at energies n...
International audienceWe introduce two simplified nuclear networks that can be used in hydrostatic c...
Context. By changing the internal composition of stars, nuclear reactions play a key role in their e...
Carbon burning plays a crucial role in stellar evolution, where this reaction is an important route ...