Hostname: page-component-7bb8b95d7b-dvmhs Total loading time: 0 Render date: 2024-09-23T17:20:12.452Z Has data issue: false hasContentIssue false

Stellar Irradiance Variations

Published online by Cambridge University Press:  13 May 2016

R. R. Radick*
Affiliation:
Air Force Research Laboratory, National Solar Observatory, Sunspot, New Mexico 88349

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

The variability of several dozen stars similar to the Sun in mass, age, and average activity has been monitored regularly in chromospheric Ca II HK emission for over three decades, and photometrically for over fifteen years. Larger samples have been observed less comprehensively. Analogous solar time series exist. A comparison of solar variability with its stellar analogs indicates that the Sun's current behavior is not unusual among sunlike stars. Both solar models and stellar measurements suggest that a true luminosity variation underlies the cyclic total irradiance changes observed on the Sun.

Type
Session I: Global Structure and Evolution of the Solar Interior
Copyright
Copyright © Astronomical Society of the Pacific 2001 

References

Baliunas, S. L., Donahue, R. A., Soon, W. H., & Henry, G. W. 1997, in ASP Conf. Ser. Vol. 154, Cool Stars, Stellar Systems, and the Sun, 10th Cambridge Workshop, ed. Donahue, R. & Bookbinder, J. (San Francisco: ASP), 153.Google Scholar
Baliunas, S. L., Donahue, R. A., Soon, W. H., Home, J. H., Frazer, J., Woodard-Eklund, L., Bradford, M., Rao, L. M., Wilson, O. C., Zhang, Q., Bennett, W., Briggs, J., Carroll, S. M., Duncan, D. K., Figueroa, D., Lanning, H. H., Misch, A., Mueller, J., Noyes, R. W., Poppe, D., Porter, A. C., Robinson, C. R., Russell, J., Shelton, J. C., Soyumer, T., Vaughan, A. H., & Whitney, J. H. 1995, ApJ, 438, 269.Google Scholar
Carlson, L. R., & Radick, R. R. 2000, NSO Internal Tech. Rpt.Google Scholar
Foukal, P., & Lean, J. 1988, ApJ, 328, 347.Google Scholar
Henry, G. W. 1999, PASP, 111, 845.CrossRefGoogle Scholar
Knaack, R., Fligge, M., Solanki, S. K., and Unruh, Y. C. 2001, A&A, in press.Google Scholar
Lean, J. 2001, this volume.Google Scholar
Lean, J., Skumanich, A., White, O. R., & Rind, D. 1994, in IAU Colloq. 143, The Sun as a Variable Star, ed. Pap, J., Froehlich, C., Hudson, H., & Solanki, S. (Cambridge: Univ. Press), 236.Google Scholar
Lockwood, G. W., Skiff, B. A., & Radick, R. R. 1997, ApJ, 485, 789.CrossRefGoogle Scholar
Radick, R. R. 2000, J. Atmos. & Solar-Terrest. Phys., in press.Google Scholar
Radick, R. R., Lockwood, G. W., Skiff, B. A., & Baliunas, S. L. 1998, ApJS, 118, 239.CrossRefGoogle Scholar
Schatten, K. H. 1993, J. Geophys. Res., 98, 18907.Google Scholar
Sofia, S., & Li, L. H. 2000, in The Solar Cycle and Terrestrial Climate, ESA Publ. SP-463, in press.Google Scholar
Unruh, Y. C., Knaack, R., Fligge, M., & Solanki, S. K. 2000, in ASP Conf. Ser. Cool Stars, Stellar Systems, and the Sun, 11th Cambridge Workshop, ed. Lopez, R., Rebolo, R., & Osorio, M. (San Francisco: ASP), in press.Google Scholar
White, O. R., Livingston, W. C., Keil, S. L., & Henry, T. W. 1998, in ASP Conf. Ser. Vol. 140, Synoptic Solar Physics, ed. Balasubramaniam, K., Harvey, J., & Rabin, D. (San Francisco: ASP), 293.Google Scholar
Willson, R. C. 1997, Science, 226, 1963.Google Scholar
Wilson, O. C. 1978, ApJ, 226, 379.Google Scholar