On the Synthesis of [TSUP]7[/TSUP]Li and [TSUP]7[/TSUP]Be in Novae
M. Hernanz, J. José, A. Coc, J. Isern
Abstract
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M. Hernanz, J. José, A. Coc, J. Isern
Abstract
Open-access reader
The production of 7 Li and 7 Be during the explosive hydrogen burning that occurs in nova explosions is computed by means of a hydrodynamic code able to treat both the accretion and the explosion stages. Large overproduction factors with respect to solar abundances are obtained, the exact value depending mainly on the chemical composition of the envelope. Although the final ejected masses are small, these results indicate that novae can contribute to the 7 Li enrichment of the interstellar medium. Furthermore, since 7 Be decays by emitting a gamma ray (478 keV), with a half-life of 53.3 days, the synthesis of 7 Li could be tested during the INTEGRAL mission.
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The production of 7 Li and 7 Be during the explosive hydrogen burning that occurs in nova explosions is computed by means of a hydrodynamic code able to treat both the accretion and the explosion stages. Large overproduction factors with respect to solar abundances are obtained, the exact value depending mainly on the chemical composition of the envelope. Although the final ejected masses are small, these results indicate that novae can contribute to the 7 Li enrichment of the interstellar medium. Furthermore, since 7 Be decays by emitting a gamma ray (478 keV), with a half-life of 53.3 days, the synthesis of 7 Li could be tested during the INTEGRAL mission.
Key concepts: Physics, Astrophysics, Nova (rocket), Interstellar medium, Accretion (finance), Explosive material, Nucleosynthesis, Hydrogen