The problem of n-capture nucleosynthesis in intermediate-mass stars during the thermal instabilities of the He shell is reanalyzed in the light of an updated set of cross sections for n-captures and of reaction rates for alpha reactions. The reaction network used in the calculations is sketched and inserted into models of thermal phases derived from new evolutionary computations for a Population II star developing an H-exhausted core of 1.07 solar mass and from published data on Population I He-shell instabilities. The computations invariably lead to strongly nonsolar distributions of s-elements. In the majority of cases, high neutron densities are found, implying the saturation of many s-branches and the production of r-isotopes. The reaction Ne-22 (alpha, n) Mg-25 probably cannot give rise to a solar distribution of s-nuclei.

Are s-elements really produced during thermal pulses in intermediate-mass stars?

BUSSO, Maurizio Maria;
1988

Abstract

The problem of n-capture nucleosynthesis in intermediate-mass stars during the thermal instabilities of the He shell is reanalyzed in the light of an updated set of cross sections for n-captures and of reaction rates for alpha reactions. The reaction network used in the calculations is sketched and inserted into models of thermal phases derived from new evolutionary computations for a Population II star developing an H-exhausted core of 1.07 solar mass and from published data on Population I He-shell instabilities. The computations invariably lead to strongly nonsolar distributions of s-elements. In the majority of cases, high neutron densities are found, implying the saturation of many s-branches and the production of r-isotopes. The reaction Ne-22 (alpha, n) Mg-25 probably cannot give rise to a solar distribution of s-nuclei.
1988
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11391/1064075
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