Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing processes from the stellar surface reach these layers, as occurs when stars become red giants and undergo the first dredge up, the abundance of 17O increases. Such an occurrence explains the drop of the 16O/17O observed in RGB stars with mass larger than ∼ 1.5M⊙. As a consequence, the interstellar medium is continuously polluted by the wind of evolved stars enriched in 17O. Aims. Recently, the Laboratory for Underground Nuclear Astrophysics (LUNA) collaboration released an improved rate of the 17O(p, α)14N reaction. In this paper we discuss the impact that the revised rate has on the 16O/17O ratio at the stellar surface and on 17O stellar yield...
The 17;18O(p,α)14;15N nuclear reactions play an important role in several astrophysical scenarios, ...
The 17O(p,α)14N reaction plays a key role in various astrophysical scenarios, from asymptotic giant ...
Giant Branch stars are the site of several recirculating and mixing processes. Some of these process...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 18O(p,α)15N reaction affects the synthesis of 15N, 18O and 19F isotopes, whose abundances can be...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 16O(p,gamma)17F reaction rate is revisited with special emphasis on the stellar temperature rang...
Context. The abundances of the three main isotopes of oxygen are altered in the course of the CNO-cy...
The 16O(p, γ )17F reaction rate is revisited with special emphasis on the stellar temperature range ...
The 17;18O(p,α)14;15N nuclear reactions play an important role in several astrophysical scenarios, ...
The 17O(p,α)14N reaction plays a key role in various astrophysical scenarios, from asymptotic giant ...
Giant Branch stars are the site of several recirculating and mixing processes. Some of these process...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Context. Material processed by the CNO cycle in stellar interiors is enriched in 17O. When mixing pr...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 18O(p,α)15N reaction affects the synthesis of 15N, 18O and 19F isotopes, whose abundances can be...
Massive stars are crucial to galactic chemical evolution for elements heavier than iron. Their contr...
The 16O(p,gamma)17F reaction rate is revisited with special emphasis on the stellar temperature rang...
Context. The abundances of the three main isotopes of oxygen are altered in the course of the CNO-cy...
The 16O(p, γ )17F reaction rate is revisited with special emphasis on the stellar temperature range ...
The 17;18O(p,α)14;15N nuclear reactions play an important role in several astrophysical scenarios, ...
The 17O(p,α)14N reaction plays a key role in various astrophysical scenarios, from asymptotic giant ...
Giant Branch stars are the site of several recirculating and mixing processes. Some of these process...