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Resolving the mass loss from red supergiants by high angular resolution

Published online by Cambridge University Press:  28 July 2017

Keiichi Ohnaka*
Affiliation:
Instituto de Astronomía, Universidad Católica del Norte, Avenida Angamos 0610, Antofagasta, Chile e-mail: k1.ohnaka@gmail.com
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Abstract

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Despite its importance on late stages of the evolution of massive stars, the mass loss from red supergiants (RSGs) is a long-standing problem. To tackle this problem, it is essential to observe the wind acceleration region close to the star with high spatial resolution. While the mass loss from RSGs is often assumed to be spherically symmetric with a monotonically accelerating wind, there is mounting observational evidence that the reality is much more complex. I review the recent progress in high spatial resolution observations of RSGs, encompassing from the circumstellar envelope on rather large spatial scales (~100 stellar radii) to milliarcsecond-resolution aperture-synthesis imaging of the surface and the atmosphere of RSGs with optical and infrared long-baseline interferometers.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2017 

References

Arroyo-Torres, B., Wittkowski, M., Chiavassa, A., et al. 2015, A&A, 575, A50 Google Scholar
Baron, F., Monnier, J.D., Kiss, L.L., et al. 2014 ApJ, 785, 46 CrossRefGoogle Scholar
Chiavassa, A., Haubois, X., Young, J. S., et al. 2010, A&A, 515, A12 Google Scholar
de Wit, W. J., Oudmaijer, R. D., Fujiyoshi, T., et al. 2008, ApJ, 685, L75 CrossRefGoogle Scholar
Eisenhauer, F., Perrin, G., Brandner, W., et al. 2008, SPIE Proc., 7013, 70132A CrossRefGoogle Scholar
Freytag, B. & Höfner, S., 2008, A&A, 483, 571 Google Scholar
Harper, G. M., 2010, ASP. Conf. Ser, 425, 152 Google Scholar
Haubois, X., Perrin, G., Lacour, S., et al. 2009, A&A, 508, 923 Google Scholar
Kervella, P., Perrin, G., Chiavassa, A., et al. 2011, A&A, 531, A117 Google Scholar
Kervella, P., Lagadec, E., Montargès, M., et al. 2016, A&A, 585, A28 Google Scholar
Lopez, B., Lagarde, S., Jaffe, W., et al. 2014, The Messenger, 157, 5 Google Scholar
Marsh, K. A., Bloemhof, E. E., Koerner, D. W., & Ressler, M. E. 2001, ApJ, 548, 861 CrossRefGoogle Scholar
Monnier, J. D., Tuthill, P. G., Lopez, B., et al. 1999, ApJ, 512, 351 Google Scholar
Monnier, J. D., Berger, J.-P., Le Bouquin, J.-B., et al. 2014, SPIE Proc, 9146, 91461Q Google Scholar
Montargès, M., Kervella, P., Perrin, G., et al. 2016, A&A, 588, A130 Google Scholar
Ohnaka, K., 2013, EAS Publications Series, 60, 121 Google Scholar
Ohnaka, K., 2014, A&A, 568, A17 Google Scholar
Ohnaka, K., Driebe, T., Hofmann, K.-H., Weigelt, G., & Wittkowski, M., 2008, A&A, 484, 371 Google Scholar
Ohnaka, K., Hofmann, K.-H., Benisty, M., et al. 2009, A&A, 503, 183 Google Scholar
Ohnaka, K., Weigelt, G., Millour, F., Hofmann, K.-H., Driebe, T., Schertl, D., Chelli, A., Massi, F., Petrov, R., & Stee, Ph., 2011, A&A, 529, A163 Google Scholar
Ohnaka, K., Hofmann, K.-H., Schertl, D., Weigelt, G., Baffa, C., Chelli, A., Petrov, R., & Robbe-Dubois, S., 2013, A&A, 555, A24 Google Scholar
Ohnaka, K., Weigelt, G., & Hofmann, K.-H., 2016, A&A, 589, A91 Google Scholar
Ohnaka, K., Weigelt, G., & Hofmann, K.-H., 2017, A&A, 597, A20 Google Scholar
Schwarzschild, M., 1975, ApJ, 195, 137 CrossRefGoogle Scholar
Shenoy, D., Humphreys, R. M., Jones, T. J., et al. 2016, AJ, 151, 51 Google Scholar
Smartt, S. J., 2015, PASA, 32, 16 Google Scholar
Smith, N., Humphreys, R., Davidson, K., et al. 2001, AJ, 121, 1111 CrossRefGoogle Scholar
Smith, N., Hinkle, K. H., & Ryde, N., 2009, AJ, 137, 3558 Google Scholar