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The ages of (the oldest) stars

Published online by Cambridge University Press:  02 August 2018

M. Catelan*
Affiliation:
Pontificia Universidad Católica de Chile, Facultad de Física, Instituto de Astrofísica, Av. Vicuña Mackenna 4860, 782-0436 Macul, Santiago, Chile email: [email protected] Millennium Institute of Astrophysics, Santiago, Chile
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Abstract

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Much progress has been achieved in the age-dating of old stellar systems, and even of individual stars in the field, in the more than sixty years since the evolution of low-mass stars was first correctly described. In this paper, I provide an overview of some of the main methods that have been used in this context, and discuss some of the issues that still affect the determination of accurate ages for the oldest stars.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2018 

References

Amelin, Y. & Ireland, T. R., 2013, Elements, 9, 39Google Scholar
Basu, S., 2016, Living Rev. Solar Phys., 13, 2Google Scholar
Bennett, C. L., Larson, D., Weiland, J. L., et al. 2013, ApJS, 208, 20Google Scholar
Bonaca, A., Tanner, J. D., Basu, S., et al. 2012, ApJL, 755, L12Google Scholar
Bono, G., Salaris, M., & Gilmozzi, R., 2013, A&A, 549, A102Google Scholar
Brogaard, K., VandenBerg, D. A., Bedin, L. R., Milone, A. P., Thygesen, A., & Grundahl, F., 2017, MNRAS, 468, 645Google Scholar
Brogaard, K., VandenBerg, D. A., Bruntt, H., et al. 2012, A&A, 543, A106Google Scholar
Brown, A. G. A., Vallenari, A., Prusti, T., et al. 2016, A&A, 595, A2Google Scholar
Buldgen, G., Salmon, S. J. A. J., Noels, A., et al. 2017, preprint (arXiv:1707.05138)Google Scholar
Buonanno, R., Corsi, C. E., Pulone, L., Fusi Pecci, F., & Bellazzini, M., 1998, A&A, 333, 505Google Scholar
Cacciari, C. & Clementini, G., 2003, in Stellar Candles for the Extragalactic Distance Scale (ed. Alloin, D. & Gieren, W.), Lecture Notes in Physics, 635, 105Google Scholar
Caiazzo, I., Heyl, J. S., Richer, H., & Kalirai, J., 2017, preprint (arXiv:1702.00091)Google Scholar
Campos, F., Bergeron, P., Romero, A. D., et al. 2016, MNRAS, 456, 3729Google Scholar
Carretta, E., Gratton, R. G., Clementini, G., & Fusi Pecci, F., 2000, ApJ, 533, 215Google Scholar
Cassisi, S., Salaris, M., & Pietrinferni, A., 2016, Mem. S. A. It., 87, 332Google Scholar
Catelan, M., 2009a, Ap&SS, 320, 261Google Scholar
Catelan, M. 2009b, in New Quests in Stellar Astrophysics. II. Ultraviolet Properties of Evolved Stellar Populations (ed. Chávez, M., Bertone, E., González, D. Rosa, & Rodríguez-Merino, L.H.), p. 175Google Scholar
Catelan, M. & de Freitas Pacheco, J. A., 1996, PASP, 108, 166Google Scholar
Catelan, M., Pritzl, B. J., & Smith, H. A., 2004, ApJS, 154, 633Google Scholar
Chaboyer, B., Demarque, P., Kernan, P. J., & Krauss, L. M., 1996a, Science, 271, 957Google Scholar
Chaboyer, B., Demarque, P., Kernan, P. J., Krauss, L. M., & Sarajedini, A., 1996b, MNRAS, 283, 683Google Scholar
Chaboyer, B., McArthur, B. E., O’Malley, E., et al. 2017, ApJ, 835, 152Google Scholar
Chaussidon, M. 2007, Lectures in Astrobiology, Vol. II, Adv. Astrobiol. Biogeophys., p. 45Google Scholar
Christlieb, N., 2016, AN, 337, 931Google Scholar
Clementini, G., Eyer, L., Ripepi, V., et al. 2017, A&A, in press (arXiv:1705.00688)Google Scholar
Connelly, J. N., Bollard, J., & Bizzarro, M., 2017, Geoch. Cosmoch. Acta, 201, 345Google Scholar
Creevey, O. L., Thévenin, F., Berio, P., et al. 2015, A&A, 575, A26Google Scholar
Dauphas, N. & Chaussidon, M., 2011, Annual Review of Earth and Planetary Sciences, 39, 351Google Scholar
Demarque, P., Deliyannis, C. P., & Sarajedini, A., 1991, in Observational Tests of Cosmological Inflation (ed. Shanks, T., Banday, A. J., and Ellis, R. S.), NATO Advanced Science Institutes Series C, 348, 111Google Scholar
Denissenkov, P., VandenBerg, D. A., Kopacki, G., & Ferguson, J. W. 2017, preprint (arXiv:1706.05454)Google Scholar
Dotter, A., Sarajedini, A., Anderson, J., et al. 2010, ApJ, 708, 698Google Scholar
Dotter, A., Sarajedini, A., & Anderson, J., 2011, ApJ, 738, 74Google Scholar
Eyer, L., Clementini, G., Guy, L. P., et al. 2017, in Wide-Field Variability Surveys: A 21st-Century Perspective (ed. Catelan, M. & Gieren, W.), EPJ Web of Conf., 152, 02002Google Scholar
Frebel, A. & Kratz, K.-L., 2009, in The Ages of Stars (ed. Mamajek, E.E., Soderblom, D.R., & Wyse, R.F.G.), Proc. IAU Symp., 258, 449Google Scholar
Gratton, R. G., Bragaglia, A., Carretta, E., Clementini, G., Desidera, S., Grundahl, F., & Lucatello, S., 2003, A&A, 408, 529Google Scholar
Gratton, R. G., Carretta, E., & Bragaglia, A., 2012, A&A Rev., 20, 50Google Scholar
Gratton, R. G., Carretta, E., Bragaglia, A., Lucatello, S., & D’Orazi, V., 2010, A&A, 517, A81Google Scholar
Gratton, R. G., Fusi Pecci, F., Carretta, E., Clementini, G., Corsi, C. E., & Lattanzi, M., 1997, ApJ, 491, 749Google Scholar
Guzik, J. A., 2008, Mem. S. A. It., 79, 481Google Scholar
Hansen, B. M. S., Kalirai, J. S., Anderson, J., et al. 2013, Nature, 500, 51Google Scholar
Iben, I. Jr., 1965, ApJ, 141, 993; erratum: ApJ, 142, 421Google Scholar
Iben, I. Jr., 1968, Nature, 220, 143Google Scholar
Iben, I. Jr., 1974, ARA&A, 12, 215Google Scholar
Iben, I. Jr., & Renzini, A., 1984, Phys. Rep., 105, 329Google Scholar
Le Pennec, M., Turck-Chièze, S., Salmon, S., Blancard, C., Cossé, P., Faussurier, G., & Mondet, G., 2015, ApJL, 813, L42Google Scholar
Magic, Z., Weiss, A., & Asplund, M., 2015, A&A, 573, A89Google Scholar
Marín-Franch, A., Aparicio, A., Piotto, G., et al. 2009, ApJ, 694, 1498Google Scholar
Neeley, J. R., Marengo, M., Bono, G., et al. 2017, ApJ, 841, 84Google Scholar
O’Malley, E. M., Gilligan, C., & Chaboyer, B., 2017, ApJ, 838, 162Google Scholar
Paczyński, B. 1997, in The Extragalactic Distance Scale (ed. Livio, M.), p. 273Google Scholar
Pancino, E., Bellazzini, M., Giuffrida, G., & Marinoni, S., 2017, MNRAS, 467, 412Google Scholar
Planck CollaborationAdam, R. Adam, R., Aghanim, N., et al. 2016a, A&A, 596, A108Google Scholar
Planck CollaborationAde, P. A. R. Ade, P. A. R., Aghanim, N., et al. 2016b, A&A, 594, A13Google Scholar
Reipurth, B., 2005, in Chondrites and the Protoplanetary Disk (ed. Krot, A.N., Scott, E.R.D., & Reipurth, B.), ASP Conf. Ser., 341, 54Google Scholar
Renzini, A., Bragaglia, A., Ferraro, F. R., et al. 1996, ApJL, 465, L23Google Scholar
Sackmann, I.-J., Boothroyd, A. I., & Kraemer, K. E., 1993, ApJ, 418, 457Google Scholar
Salaris, M., 2013, in Advancing the Physics of Cosmic Distances (ed. de Grijs, R.), Proc. IAU Symp., 289, 145Google Scholar
Salaris, M., Riello, M., Cassisi, S., & Piotto, G., 2004, A&A, 420, 911Google Scholar
Sandage, A., 1970, ApJ, 162, 841Google Scholar
Sandage, A., Katem, B., & Sandage, M., 1981, ApJS, 46, 41Google Scholar
Sandquist, E. L., 2000, MNRAS, 313, 571Google Scholar
Sarajedini, A., Bedin, L. R., Chaboyer, B., et al. 2007, AJ, 133, 1658Google Scholar
Sarajedini, A., Chaboyer, B., & Demarque, P., 1997, PASP, 109, 1321Google Scholar
Sarajedini, A. & Demarque, P., 1990, ApJ, 365, 219Google Scholar
Serenelli, A., 2016, European Phys. Journal A, 52, 78Google Scholar
Sneden, C., Cowan, J. J., Lawler, J. E., et al. 2003, ApJ, 591, 936Google Scholar
Soderblom, D. R., 2010, ARA&A, 48, 581Google Scholar
Tayar, J., Somers, G., Pinsonneault, M. H., et al. 2017, ApJ, 840, 17Google Scholar
Thompson, I. B., Kaluzny, J., Pych, W., Burley, G., Krzeminski, W., Paczyński, B., Persson, S. E., & Preston, G. W., 2001, AJ, 121, 3089Google Scholar
Thompson, I. B., Kaluzny, J., Rucinski, S. M., Krzeminski, W., Pych, W., Dotter, A., & Burley, G. S., 2010, AJ, 139, 329Google Scholar
Tolstoy, E., Hill, V., & Tosi, M., 2009, ARA&A, 47, 371Google Scholar
Trampedach, R., Stein, R. F., Christensen-Dalsgaard, J., & Nordlund, Å., Asplund, M., 2014, MNRAS, 445, 4366Google Scholar
Valle, G., Dell’Omodarme, M., Prada Moroni, P. G., & Degl’Innocenti, S., 2013, A&A, 549, A50Google Scholar
Valle, G., Dell’Omodarme, M., Prada Moroni, P. G., & Degl’Innocenti, S., 2015, A&A, 575, A12Google Scholar
Valls-Gabaud, D., 2014, in The Ages of Stars (ed. Lebreton, Y., Valls-Gabaud, D., & Charbonnel, C.), EAS Pub. Ser., 65, 5Google Scholar
VandenBerg, D. A., Bolte, M., & Stetson, P. B., 1990, AJ, 100, 445Google Scholar
VandenBerg, D. A., Bolte, M., & Stetson, P. B., 1996, ARA&A, 34, 461Google Scholar
VandenBerg, D. A., Bond, H. E., Nelan, E. P., Nissen, P. E., Schaefer, G. H., & Harmer, D., 2014, ApJ, 792, 110Google Scholar
VandenBerg, D. A., Brogaard, K., Leaman, R., & Casagrande, L., 2013, ApJ, 775, 134Google Scholar
VandenBerg, D. A., Casagrande, L., & Stetson, P. B., 2010, AJ, 140, 1020Google Scholar
VandenBerg, D. A., Denissenkov, P. A., & Catelan, M., 2016, ApJ, 827, 2Google Scholar
Venn, K. A., Irwin, M., Shetrone, M. D., Tout, C. A., Hill, V., & Tolstoy, E. 2004, AJ, 128, 1177; erratum: 2006, AJ, 1726Google Scholar
Wagner-Kaiser, R., Sarajedini, A., von Hippel, T., et al. 2017, MNRAS, 468, 1038Google Scholar
Wuchterl, G. & Klessen, R. S., 2001, ApJL, 560, L185Google Scholar
Zoccali, M., Renzini, A., Ortolani, S., et al. 2001, ApJ, 553, 733Google Scholar