NASA NTRS · 19760027582
An extremely carbon enhanced 'nova' model
Abstract
Expanding upon the authors' earlier work, Hoyle and Clayton (1974) have suggested that a thermonuclear runaway in a white dwarf envelope that consists of equal numbers of protons and C-12 nuclei will produce the s or r-process elements. The present work studies such a runaway and finds that these initial conditions cause a 'super' nova outburst that does not result in any s or r-process nucleosynthesis. However, the model is very interesting in that it reaches peak temperatures of 1.6 billion K and peak burning rates exceeding 2 times 10 to the 23rd erg/gm/sec. A shock forms and ejects 10 to the 29th grams moving with speeds up to 60,000 km/sec. The peak bolometric magnitude is -21.2 and this model will also produce a gamma-ray burst.
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Starrfield, S. G., Sparks, W. M., Truran, J. W.. 1975-01-01. An extremely carbon enhanced 'nova' model. https://ntrs.nasa.gov/citations/19760027582
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