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Presupernova evolution in massive interacting binaries
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1992
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Binary interaction significantly affects the evolution of massive stars, influencing their eventual supernova explosions. The authors use a modified Henyey‑type stellar evolution code, coupled with Monte Carlo simulations, to model mass and angular momentum loss and transfer in massive close binaries. They find that 15–30 % of massive stars become helium stars and 5 % become blue supergiants due to prior binary interaction, and that many distinct evolutionary scenarios arise depending on interaction type and progenitor stage. Published in The Astrophysical Journal, May 1992, DOI 10.1086/171341.
view Abstract Citations (590) References (125) Co-Reads Similar Papers Volume Content Graphics Metrics Export Citation NASA/ADS Presupernova Evolution in Massive Interacting Binaries Podsiadlowski, Ph. ; Joss, P. C. ; Hsu, J. J. L. Abstract The way in which binary interaction affects the presupernova evolution of massive close binaries and the resulting supernova explosions is investigated systematically by means of a Henyey-type stellar evolution code that was modified to allow its application to binary stellar evolution calculations. The code makes it possible to trace the effects of mass and angular momentum loss from the binary, as well as mass transfer within the binary system. It is found that a large number of binary scenarios can be distinguished, depending on the type of binary interaction and the evolutionary stage of the supernova progenitor at the time of the interaction. Monte Carlo simulations are performed to estimate the frequencies of the occurrence of various scenarios. It is found that, because of a previous binary interaction, 15-30 percent of all massive stars (with initial masses greater than about 8 solar masses) become helium stars, and another 5 percent of all massive stars end their lives as blue supergiants rather than as red supergiants. Publication: The Astrophysical Journal Pub Date: May 1992 DOI: 10.1086/171341 Bibcode: 1992ApJ...391..246P Keywords: Binary Stars; Massive Stars; Stellar Evolution; Supernovae; Computational Astrophysics; Monte Carlo Method; Stellar Envelopes; Stellar Mass Accretion; Stellar Models; Supernova 1987a; Astrophysics full text sources ADS | data products SIMBAD (4)