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Evolutionary Models of RR Lyrae Stars

Published online by Cambridge University Press:  15 February 2018

Young-Wook Lee*
Affiliation:
Department of Astronomy, Yale University, New Haven, CT, USA

Extract

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As tracers of old stellar populations and as primary Population II standard candles, RR Lyrae stars have played an important role in the development of modern astronomy. Our knowledge of stellar evolution has identified these variable stars in a core helium burning phase of low-mass star evolution, the hoiizontal-branch (HB) phase. Consequently, not only to understand fully the nature of RR Lyrae stars, but also to apply them correctly as population probes and distance indicators, we must understand the underlying evolutionary effect of HB stars.

In this paper, I briefly review the most important properties of RR Lyrae stars predicted from the HB evolutionary models, and present many pieces of supporting evidence for these models. For the implications of these models on the chronology of the Galactic formation and on the cosmological distance scale, the reader is referred to several recent publications by Lee (1992a,b,c,d).

Type
Theoretical Breakthroughs
Copyright
Copyright © Cambridge University Press 1993

References

Cacciari, C, Clementini, G., and Fernley, J. A. 1992, ApJ, in pressGoogle Scholar
Cacciari, C, Clementini, G., Prevot, L., and Buser, R. 1989, A&A, 209, 141 Google Scholar
Caputo, R., and De Santis, R. 1992, AJ, 104, 253 CrossRefGoogle Scholar
Carney, B. W., Storm, J., and Jones, R. V. 1992, ApJ, 386, 663 Google Scholar
Castellani, V. 1983, Mem. Soc. Astron. Italiana, 54, 141 Google Scholar
Clementini, G., and Cacciari, C. 1990, in Confrontation between Stellar Pulsation and Evolution, ed. Cacciari, C. (San Francisco: ASP), p. 109 Google Scholar
Cox, A. N. 1991, ApJL, 381, L71 CrossRefGoogle Scholar
Eddington, A. S. 1918, MNRAS, 79, 2 Google Scholar
Kovacs, G., Buchler, J. R., and Marom, A. 1991, A&A, 252, L27 Google Scholar
Lee, Y.-W. 1989, Ph.D. thesis, Yale University Google Scholar
Lee, Y.-W. 1990, ApJ, 363, 159 Google Scholar
Lee, Y.-W. 1991a, ApJ, 367, 524 Google Scholar
Lee, Y.-W. 1991b, ApJL, 373, L43 Google Scholar
Lee, Y.-W. 1992a, PASP, in press (September)Google Scholar
Lee, Y.-W. 1992b, Mem. Soc. Astron. Italiana, in pressGoogle Scholar
Lee, Y.-W. 1992c, AJ, in press (November)Google Scholar
Lee, Y.-W. 1992d, in Variable Stars and Galaxies, ed. Warner, B. (San Francisco: ASP), in pressGoogle Scholar
Lee, Y.-W., Demarque, P., and Zinn, R. 1990, ApJ, 350, 155 CrossRefGoogle Scholar
Lee, Y.-W., and Zinn, R., 1990, in Confrontation between Stellar Pulsation and Evolution, ed. C.|Cacciari (San Francisco: ASP), p. 26 Google Scholar
Liu, T., and Janes, K. 1990, ApJ, 354, 273 Google Scholar
Oosterhoff, P. Th. 1939, Observatory, 62, 104 Google Scholar
Renzini, A. 1983, Mem. Soc. Astron. Italiana, 54, 335 Google Scholar
Sandage, A. 1982, ApJ, 252, 553 Google Scholar
Sandage, A. 1990, ApJ, 350, 631 CrossRefGoogle Scholar
Sandage, A., and Cacciari, C. 1990, ApJ, 350, 645 Google Scholar
van Albada, T. S., and Baker, N. 1971, ApJ, 169, 311 Google Scholar
Yi, S., Lee, Y.-W., and Demarque, P. 1992, in preparationGoogle Scholar