Hostname: page-component-78c5997874-j824f Total loading time: 0 Render date: 2024-11-19T04:50:01.576Z Has data issue: false hasContentIssue false

The predictive power of numerical simulations to study accretion and outflow in T Tauri Stars

Published online by Cambridge University Press:  20 January 2023

Ana I. Gómez de Castro*
Affiliation:
Joint Center for Ultraviolet Astronomy, Universidad Complutense de Madrid, Avda. Puerta de Hierro s/n, 28040 Madrid, Spain email: [email protected] S.D. Física de la Tierra y Astrofísica, Fac. CC Matemáticas, Plaza de Ciencias 3, 28040 Madrid, Spain
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.

T Tauri Stars (TTSs) offer a unique chance to study the physics of non-relativistic accretion engines. In this invited talk, the current status of the field is presented with special emphasis on the predictive power of the numerical simulation of magnetospheric accretion and close binary systems and its impact on astronomical observations.

Type
Contributed Paper
Creative Commons
Creative Common License - CCCreative Common License - BY
This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright
© The Author(s), 2023. Published by Cambridge University Press on behalf of International Astronomical Union

References

Artymowicz, P., Lubow, S.H. 1994, ApJ, 421, 651 CrossRefGoogle Scholar
Bate, M.R., Bonnell, I.A. 1997, MNRAS, 288, 1041 10.1093/mnras/288.4.1060CrossRefGoogle Scholar
Blandford, R. D., Payne, D.G. 1982, MNRAS, 199, 883 CrossRefGoogle Scholar
Bouvier, J., Alencar, S. H. P., Harries, T. J., Johns-Krull, C. M. et al. 2007, Protostars and Planets V, Reipurth, B., Jewitt, D., and Keil, K. (eds.), University of Arizona Press, Tucson, 951Google Scholar
Calvet, N., Gullbring, E. 1998, ApJ, 509, 802 10.1086/306527CrossRefGoogle Scholar
Donati, J. -F., Jardine, M. M., Gregory, S. G., Petit, P., et al. 2007, MNRAS, 380, 1297 10.1111/j.1365-2966.2007.12194.xCrossRefGoogle Scholar
Donati, J. -F., Jardine, M. M., Gregory, S. G., Petit, P., et al. 2008, MNRAS, 386, 1234 10.1111/j.1365-2966.2008.13111.xCrossRefGoogle Scholar
Donati, J. -F., Bouvier, J., Alencar, S. H., Hill, C., et al. 2019, MNRAS, 483, L1 CrossRefGoogle Scholar
de Val-Borro, M., Gahm, G. F., Stempels, H. C, et al. 2011, A&A, 535, 6 Google Scholar
Ghosh, P., Lamb, F.K. 1979, ApJ, 232, 259 CrossRefGoogle Scholar
Goldreich, P.,S., Tremaine, S. 1980, ApJ, 241, 425 CrossRefGoogle Scholar
Gómez de Castro, A. I., Fernández, M. 1996, MNRAS, 283, 55 10.1093/mnras/283.1.55CrossRefGoogle Scholar
Gómez de Castro, A. I., Franqueira, M. 1997, A&A, 323, 541 Google Scholar
Gómez de Castro, A. I., Lamzin, S. 1999, MNRAS, 304, L41 10.1046/j.1365-8711.1999.02545.xCrossRefGoogle Scholar
Gómez de Castro, A. I., von Rekowski, B. 2011, MNRAS, 411, 849 10.1111/j.1365-2966.2010.17726.xCrossRefGoogle Scholar
Gómez de Castro, A. I., Marcos-Arenal, P. 2012, ApJ, 749, 190 10.1088/0004-637X/749/2/190CrossRefGoogle Scholar
Gómez de Castro, A. I. 2012, ApJ, 775, 131 CrossRefGoogle Scholar
Gómez de Castro, A. I. 2013, Planets, Stars and Stellar Systems Vol. 4, by Oswalt, Terry D.; Barstow, Martin A., 279CrossRefGoogle Scholar
Gómez de Castro, A.I., Gaensicke, B., Neiner, C. & Barstow, M.A. 2016a, JATIS, 2, id. 041215CrossRefGoogle Scholar
Gómez de Castro, A.I., Loyd, R. O. P., France, K., Sytov, A. et al. 2016b, ApJ, 818, L17 CrossRefGoogle Scholar
Gómez de Castro, A. I., Vallejo, J. C., Canet, A., Loyd, P. et al. 2020, ApJ, 904, 120 10.3847/1538-4357/abbeefCrossRefGoogle Scholar
Goodson, A. P., Winglee, R. M., Bohm, K.-H. 1997, ApJ, 489, 199 CrossRefGoogle Scholar
Goodson, A. P., Winglee, R. M. 1999, ApJ, 524, 159 10.1086/307780CrossRefGoogle Scholar
Gregory, S. G., Donati, J. -F., Morin, J., Hussain, G. A. J., et al. 2012, ApJ, 755, 97 CrossRefGoogle Scholar
Hanawa, T., Ochi, Y., Ando, K. 2010, MNRAS, 708, 485 Google Scholar
Hartmann, L., Herczeg, G., Calvet, N. 2016, ARAA, 54, 135 CrossRefGoogle Scholar
Ireland, L. G., Zanni, C., Matt, S. P., Pantolmos, G. 2021, ApJ, 906, 4 10.3847/1538-4357/abc828CrossRefGoogle Scholar
Johns-Krull, C. M., Valenti, J. A.; Koresko, C. 1999, ApJ, 516, 900 CrossRefGoogle Scholar
Johns-Krull, C. M. 2007, ApJ, 664, 975 CrossRefGoogle Scholar
Li, R., Chen, Y.-X. L., Douglas, N. C. 2022, MNRAS, 510, 5246 Google Scholar
Lin, D.N.C., Papaloizou, J.C.B. 1992, Protostars and planets III (A93-42937 17-90), 749Google Scholar
Long, M., Romanova, M. M., Lovelace, R. V. E. 2008, MNRAS, 386, 1274 CrossRefGoogle Scholar
Matt, S., Goodson, A. P., Winglee, R. M. 2002, ApJ, 574, 232 CrossRefGoogle Scholar
Nelson, R.P., Papaloizou, J.C.B. 2003, Proceedings of the Conference on Towards Other Earths: DARWIN/TPF and the Search for Extrasolar Terrestrial Planets, Edited by M. Fridlund, T. Henning, compiled by H. Lacoste, ESA SP-539, 175Google Scholar
Pantolmos, G., Zanni, C., Bouvier, J. 2020, A&A, 643, A129 Google Scholar
Pudritz, R. E., Pelletier, G., Gómez de Castro, A. I. 1991, The Physics of Star Formation and Early Stellar Evolution, NATO Advanced Study Institute (ASI) Series C, 342, 539 CrossRefGoogle Scholar
Pudritz, R. E., Ouyed, R., Fendt, Ch ., Brandenburg, A. 2007, Protostars and Planets V, Reipurth, B., Jewitt, D., and K., Keil (eds.), University of Arizona Press, Tucson, 277Google Scholar
Romanova, M. M., Ustyugova, G. V., Koldoba, A. V., Lovelace, R. V. E. 2002, ApJ, 578, 420 10.1086/342464CrossRefGoogle Scholar
Romanova, M. M., Ustyugova, G. V., Koldoba, A. V., Wick, J.V., et al. 2003, ApJ, 595, 1009 CrossRefGoogle Scholar
Romanova, M. M., Ustyugova, G. V., Koldoba, A. V., Lovelace, R. V. E. 2004, ApJ, 610, 910 CrossRefGoogle Scholar
Romanova, M.M., Kulkarni, A.K., Long, M., & Lovelace, R.V.E. 2008, AIP Conference Proceedings, 1068, 87 10.1063/1.3031210CrossRefGoogle Scholar
Romanova, M. M., Ustyugova, G. V., Koldoba, A. V., Lovelace, R. V. E. 2012, MNRAS, 421, 63 Google Scholar
Romanova, M. M., Koldoba, A. V., Ustyugova, G. V., Blinova, A. A. et al. 2021, MNRAS, 506, 372 10.1093/mnras/stab1724CrossRefGoogle Scholar
Simon, T., Vrba, F. J., Herbst, W. 1990, AJ, 100, 1957 10.1086/115651CrossRefGoogle Scholar
Shi, J.-M., Krolik, J.H., Lubow, S.H. et al. 2012, ApJ, 749, 118 CrossRefGoogle Scholar
Shu, F., Najita, J., Ostriker, E., Wilkin, F. et al. 1994, ApJ, 429, 781 10.1086/174363CrossRefGoogle Scholar
Sytov, A. Yu., Fateeva, A.M. 2021, ARep, 63, 1045 CrossRefGoogle Scholar
von Rekowski, B., Brandenburg, A. 2006, AN, 327, 53 Google Scholar
von Rekowski, B., Brandenburg, A. 2004, A&A, 420, 17 Google Scholar
Weber, E.J., Davis, L. 1967, ApJ, 148, 217 CrossRefGoogle Scholar
Yang, H., Herczeg, G. J., Linsky, J.L., Brown, A. et al. 2012, ApJ, 744, 121 CrossRefGoogle Scholar