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Constraints on stellar evolution from white dwarf asteroseismology

Published online by Cambridge University Press:  23 January 2015

Agnès Bischoff-Kim*
Affiliation:
Penn State Worthington Scranton email: axk55@psu.edu
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Abstract

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High mass and low mass stars follow a similar evolution until the inert core phase that follows the end of the core helium burning stage. In particular, one common phase of stellar evolution is the alpha capture reaction that turns carbon into oxygen in the core. We can obtain constraints on this reaction rate by studying the remnants of low mass stars, as this is the ultimate reaction that occurs in their core. We also present results that allow us to test the time dependent calculations of diffusion in dense interiors.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2015 

References

Angulo, C., Arnould, M., Rayet, M., et al. 1999, Nuclear Physics A 656, 3CrossRefGoogle Scholar
Bischoff-Kim, A. 2008, Communications in Asteroseismology 154, 16CrossRefGoogle Scholar
Bischoff-Kim, A., Montgomery, M. H., & Winget, D. E. 2008, ApJ 675, 1512Google Scholar
Bischoff-Kim, A. & Østensen, R. H. 2011, ApJl 742, L16Google Scholar
Córsico, A. H., Althaus, L. G., García-Berro, E., & Romero, A. D. 2013, Journal of Cosmology and Astroparticle Physics 6, 32Google Scholar
Dehner, B. T. & Kawaler, S. D. 1995, ApJl 445, L141Google Scholar
Metcalfe, T. S. 2003, ApJl 587, L43CrossRefGoogle Scholar
Metcalfe, T. S., Nather, R. E., Watson, T. K., et al. 2005, A& A 435, 649Google Scholar