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Interaction of massive stars with their surroundings

Published online by Cambridge University Press:  01 April 2008

Gerhard Hensler*
Affiliation:
Institute of Astronomy, University of Vienna, Tuerkenschanzstr. 17, 1180 Vienna, Austria email: hensler@astro.univie.ac.at
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Abstract

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Due to their short lifetimes but their enormous energy release in all stages of their lives massive stars are the major engines for the comic matter circuit. They affect not only their close environment but are also responsible to drive mass flows on galactic scales. Recent 2D models of radiation-driven and wind-blown Hii regions are summarized which explore the impact of massive stars to the interstellar medium but find surprisingly small energy transfer efficiencies while an observable Carbon self-enrichment in the Wolf-Rayet phase is detected in the warm ionized gas. Finally, the focus is set on state-of-the-art modelling of Hii regions and its present weaknesses with respect to uncertainties and simplifications but on a perspective of the requested art of their modelling in the 21st century.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2008

References

Baumgardt, H. & Kroupa, P. 2008, MNRAS, 380, 1589CrossRefGoogle Scholar
Chu, Y.-H. 2000, Rev.Mex.Astron.Astrofis., 9, 262Google Scholar
Esteban, C., García-Rojas, J., Peimbert, M., et al. (2005). ApJ, 618, L95Google Scholar
Evans, I. N. & Dopita, M. A. 1987, ApJ, 319, 662Google Scholar
Freyer, T., Hensler, G., & Yorke, H. W., 2003, ApJ, 594, 888CrossRefGoogle Scholar
Freyer, T., Hensler, G., & Yorke, H. W., 2006, ApJ, 638, 262CrossRefGoogle Scholar
Fukuda, N. & Hanawa, T. 2000, ApJ, 533, 911Google Scholar
García-Segura, G. & MacLow, M.-M. 1995, ApJ, 455, 145Google Scholar
García-Segura, G., MacLow, M.-M., & Langer, N. 1996a, A&A, 305, 229Google Scholar
García-Segura, G., Langer, N., & MacLow, M.-M. 1996b, A&A, 316, 133Google Scholar
Guedel, M., Briggs, K. R., Montemerle, T., et al. 2007, Science, 319, 309CrossRefGoogle Scholar
Hensler, G. 2003, ASP Conf. Ser. Vol., 304, eds. Charbonnel, C. et al. , p. 371Google Scholar
Hensler, G. 2007, EAS Publ. Ser. Vol., 24, eds. Ensellem, E. et al. , p. 113CrossRefGoogle Scholar
Hensler, G., Recchi, S., Kroeger, D., & Freyer, T., 2008, in “Pathways through an eclectic Universe”, ASP Conf. Ser., in press, eds. Knapen, J. et al. , p. 75Google Scholar
Hirschi, R., Meynet, G., & Maeder, A., 2004, A&A, 425, 649Google Scholar
Hirschi, R., Meynet, G., & Maeder, A., 2005, A&A, 433, 1013Google Scholar
Kennicutt, R. J. 1998, ApJ, 498, 541CrossRefGoogle Scholar
Köppen, J., Theis, C., & Hensler, G. 1995, A&A, 296, 99Google Scholar
Kroeger, D. 2006, PhD thesis, University of Kiel, GermanyGoogle Scholar
Kroeger, D., Hensler, G., & Freyer, T. 2006, A&A, 450, L5Google Scholar
Kroeger, D., Freyer, T., Hensler, G., & Yorke, H. W. 2007, A&A, submittedGoogle Scholar
Lasker, B. M. 1967, ApJ, 149, 23CrossRefGoogle Scholar
MacLow, M.-M. 2000, Rev.Mex.Astron.Astrofis., 9, 273Google Scholar
Peimbert, M. 1967, ApJ, 150, 825CrossRefGoogle Scholar
Rijkhorst, E.-J., Plewa, T., Dubey, A., & Mellema, G. 2006, A&A, 452, 907Google Scholar
Różyczka, M. 1985, A&A, 143, 59Google Scholar
Schaller, G., Schaerer, D., Maeder, A., & Meynet, G. 1992, A&A Suppl., 96, 269Google Scholar
Stasińska, G. 1979, A&A Suppl., 32, 429Google Scholar
Stasińska, G. 2002, Rev.Mex.Astron.Astrofis., 12, 62Google Scholar
Weaver, R., McCray, R., Castor, J., et al. 1977, ApJ, 218, 377; erratum, ApJ, 220, 742CrossRefGoogle Scholar
Yorke, H. W. 1986, ARAA, 24, 49CrossRefGoogle Scholar