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Convective overshoot mixing in Nova outbursts - The dependence on the composition of the underlying white dwarf

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arxiv 1111.6777 v3 pith:FIPXMWIM submitted 2011-11-29 astro-ph.SR

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keywords underlyingcasesconvectiveenrichmentmechanismsignificantaccretedcarbon
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We present here, for the first time, a 2D study of the overshoot convective mechanism in nova outbursts for a wide range of possible compositions of the layer underlying the accreted envelope. Previous surveys studied this mechanism only for solar composition matter accreted on top of carbon oxygen (C-O) white dwarfs. Since, during the runaway, mixing with carbon enhances the hydrogen burning rates dramatically, one should question whether significant enrichment of the ejecta is possible also for other underlying compositions (He, O, Ne, Mg), predicted by stellar evolution models. We simulated several non-carbon cases and found significant amounts of those underlying materials in the ejected hydrogen layer. Despite large differences in rates, time scales and energetics between the cases, our results show that the convective dredge up mechanism predicts significant enrichment in all our non-carbon cases, including helium enrichment in recurrent novae. The results are consistent with observations.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Optical Spectroscopy and Temporal Evolution of the Nova V1405 Cas

    astro-ph.SR 2026-07 conditional novelty 5.0 of 10

    A 1,051-day optical study of the slow nova V1405 Cas, with seven-epoch Cloudy photoionization models, finds near-solar neon and argues the white dwarf is a low-mass CO type, not ONeMg.

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