Hostname: page-component-848d4c4894-x24gv Total loading time: 0 Render date: 2024-05-14T03:56:55.965Z Has data issue: false hasContentIssue false

AGB outflows as tests of chemical kinetics and radiative transfer models

Published online by Cambridge University Press:  12 October 2020

M. Van de Sande
Affiliation:
Department of Physics and Astronomy, Institute of Astronomy, KU Leuven, Celestijnenlaan 200D, 3001 Leuven, Belgium
T. Danilovich
Affiliation:
Department of Physics and Astronomy, Institute of Astronomy, KU Leuven, Celestijnenlaan 200D, 3001 Leuven, Belgium
L. Decin
Affiliation:
Department of Physics and Astronomy, Institute of Astronomy, KU Leuven, Celestijnenlaan 200D, 3001 Leuven, Belgium School of Chemistry, University of Leeds, Leeds LS2 9JT, UK email: marie.vandesande@kuleuven.be
Rights & Permissions [Opens in a new window]

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 outflows of asymptotic giant branch (AGB) stars are important astrochemical laboratories, rich in molecular material and host to various chemical processes, including dust formation. Since the different chemistries are relatively easily probed, AGB outflows are ideal testbeds within the wider astrochemical community. Recent observations are pushing the limits of both our current chemical models and radiative transfer routines. Current chemical models are restricted by the completeness of their chemical networks and the accuracy of the reaction rates. The molecular abundances retrieved by radiative transfer routines are strongly dependent on collisional rates, which are often not measured or calculated for molecules of interest. To further our understanding of the chemistry within the outflow, collaboration with the laboratory astrophysics community is essential. This collaboration is mutually beneficial, as it in turn provides new science questions for laboratory experiments and computations.

Type
Contributed Papers
Copyright
© International Astronomical Union 2020

References

Agúndez, M., Cernicharo, J., Quintana-Lacaci, G. et al. 2017, A&A, 601, A4Google Scholar
Boulangier, J. Gobrecht, D., Decin, L. de Koter, A., & Yates, J. 2019, MNRAS, 489, 4890CrossRefGoogle Scholar
Cordiner, M. A. & Millar, T. J. 2009, ApJ, 697, 68CrossRefGoogle Scholar
Cherchneff, I. Barker, J. R., Tielens, A. G. G. M. et al. 1992, ApJ, 401, 269CrossRefGoogle Scholar
Daniel, F. Dubernet, M.-L., Pacaud, F. et al. 2010, A&A, 517, A13Google Scholar
Daniel, F. Dubernet, M.-L., & Grosjean, A. 2011, A&A, 536, A76Google Scholar
Danilovich, T. Van de Sande, M., De Beck, E. et al. 2017, A&A, 606, A124Google Scholar
Danilovich, T. Decin, L. Van de Sande, M. et al. 2018, Galaxies, 6, 3, 86CrossRefGoogle Scholar
Decin, L. Richards, A. M. S., Waters, L. B. F. M. et al. 2017, A&A, 608, A55Google Scholar
Dubernet, M. L., Daniel, F. Grosjean, A. et al. 2006, A&A, 460, 323Google Scholar
Dubernet, M. L., Daniel, F. Grosjean, A. et al. 2009, A&A, 497, 911Google Scholar
Faure, A. Crimier, N., Ceccarelli, C. et al. 2007, A&A, 472, 1029Google Scholar
Faure, A. & Josselin, E. 2008, A&A, 492, 257Google Scholar
Frenklach, M. & Feigelson, E. D. 1989, ApJ, 341, 372CrossRefGoogle Scholar
Guélin, M., Lucas, R., & Cernicharo, J. 1993, A&A, 280, L19Google Scholar
Guélin, M., Neininger, N., Lucas, R. et al. 1999, in: The Physics and Chemistry of the Interstellar Medium, Eds. V. Ossenkopf, J. Stutzki, & G. WinnewisserGoogle Scholar
Khouri, T. Maercker, M., Waters, L. B. F. M. et al. 2016, A&A, 591, A70Google Scholar
Millar, T. J. & Herbst, E. 1994, A&A, 288, 561Google Scholar
Millar, T. J., Herbst, E., & Bettens, R. P. A. 2000, MNRAS, 316, 195Google Scholar
Schöier, F. L., van der Tak, F. F. S., van Dishoeck, E. F. et al. 2005, A&A, 432, 369Google Scholar
van der Tak, F. 2011, in: J. Cernicharo & R. Bachiller (eds.), The Molecular Universe, Proc. IAU Symposium No. 280, p. 449Google Scholar
Van de Sande, M., Sundqvist, J. O., Millar, T. J. et al. 2018, A&A, 616, A106Google Scholar