Isotopic ratios in the red giant component of the recurrent nova T Coronae Borealis

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY(2020)

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摘要
We report the determination of abundances and isotopic ratios for C, O, and Si in the photosphere of the red giant (RG) component of the recurrent nova (RN) T Coronae Borealis from new 2.284-2.402 mu m and 3.985-4.155 mu m spectroscopy. Abundances and isotopic ratios in the photosphere may be affected by (i) processes in the RG interior which are brought to the surface during dredge-up and (ii) contamination of the RG, either during the common envelope phase of the binary evolution or by material synthesized in RN eruptions, or a combination of the two. We find that the abundances of C, O, and Si are reasonably consistent with the expected composition of an RG after first dredge-up, as is the O-16/O-17 ratio. The Si-28/Si-29 ratio is found to be 8.6 +/- 3.0, and that for Si-28/Si-30 is 21.5 +/- 3.0. The C-12/C-13 ratio (10 +/- 2) is somewhat lower than expected for first dredge-up. The O-16/O-18 ratio (41 +/- 3) is highly inconsistent with that expected either from RG evolution (similar to 550) or from contamination of the RG by the products of a nova thermonuclear runaway. In particular, the C and O isotopic ratios taken in combination are a puzzle. We urge confirmation of our results using spectroscopy at high resolution. We also encourage a thorough theoretical study of the effects on the secondary star in an RN system of contamination by ejecta having anomalous abundances and isotopic ratios.
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nuclear reactions,nucleosynthesis,abundances,stars: abundances,stars: AGB and post-AGB,stars: individual,(TCrB) - novae,cataclysmic variables,infrared: stars
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