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Realistic 3D MHD modeling of self-organized magnetic structuring of the solar corona

Published online by Cambridge University Press:  24 September 2020

Irina N. Kitiashvili
Affiliation:
NASA Ames Research Center Moffett Field, MS 258-6, Mountain View, USA email: mailto:irina.n.kitiashvili@nasa.gov
Alan A. Wray
Affiliation:
NASA Ames Research Center Moffett Field, MS 258-6, Mountain View, USA email: mailto:irina.n.kitiashvili@nasa.gov
Viacheslav Sadykov
Affiliation:
NASA Ames Research Center Moffett Field, MS 258-6, Mountain View, USA email: mailto:irina.n.kitiashvili@nasa.gov
Alexander G. Kosovichev
Affiliation:
NASA Ames Research Center Moffett Field, MS 258-6, Mountain View, USA email: mailto:irina.n.kitiashvili@nasa.gov New Jersey Institute of Technology, Newark, NJ07102, USA email: mailto:alexander.g.kosovichev@njit.edu
Nagi N. Mansour
Affiliation:
NASA Ames Research Center Moffett Field, MS 258-6, Mountain View, USA email: mailto:irina.n.kitiashvili@nasa.gov
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Abstract

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The dynamics of solar magnetoconvection spans a wide range of spatial and temporal scales and extends from the interior to the corona. Using 3D radiative MHD simulations, we investigate the complex interactions that drive various phenomena observed on the solar surface, in the low atmosphere, and in the corona. We present results of our recent simulations of coronal dynamics driven by underlying magnetoconvection and atmospheric processes, using the 3D radiative MHD code StellarBox (Wray et al. 2018). In particular, we focus on the evolution of thermodynamic properties and energy exchange across the different layers from the solar interior to the corona.

Type
Contributed Papers
Copyright
© International Astronomical Union 2020

References

Carlsson, M., Hansteen, V. H., Gudiksen, B. V., Leenaarts, J., & De Pontieu, B. 2016, A&A, 585, A4CrossRefGoogle Scholar
Chen, F., Rempel, M., & Fan, Y. 2017, ApJ, 846, 149CrossRefGoogle Scholar
Cheung, M. C. M., Rempel, M., Title, A. M., & Schüssler, M. 2010, ApJ, 720, 233CrossRefGoogle Scholar
Cheung, M. C. M., Rempel, M., Chintzoglou, G., et al. 2019, Nature Astronomy, 3, 160CrossRefGoogle Scholar
Christensen-Dalsgaard, J., Dappen, W., Ajukov, S. V., et al. 1996, Science, 272, 1286CrossRefGoogle Scholar
Gudiksen, B. V. & Nordlund, Å. 2005, ApJ, 618, 1031CrossRefGoogle Scholar
Iijima, H. & Yokoyama, T. 2017, ApJ, 848, 38CrossRefGoogle Scholar
Kitiashvili, I. N., Kosovichev, A. G., Wray, A. A., & Mansour, N. N. 2010, ApJ, 719, 307CrossRefGoogle Scholar
Kitiashvili, I. N., Kosovichev, A. G., Lele, S. K., Mansour, N. N., & Wray, A. A. 2013, ApJ, 770, 37CrossRefGoogle Scholar
Kitiashvili, I. N., Couvidat, S., & Lagg, A. 2015, ApJ, 808, 59CrossRefGoogle Scholar
Kitiashvili, I., Wray, A. A., Kosovichev, A. G., Sadykov, V. M., & Mansour, N. N. 2019a, in American Astronomical Society Meeting Abstracts, Vol. 234, American Astronomical Society Meeting Abstracts #234, 106.15Google Scholar
Kitiashvili, I. N., Kosovichev, A. G., Mansour, N. N., Wray, A. A., & Sandstrom, T. A. 2019b, ApJ, 872, 34CrossRefGoogle Scholar
Kitiashvili, I. N., Wray, A. A., Kosovichev, A. G., Sadykov, V. M., & Mansour, N. N. 2020, in preparationGoogle Scholar
Moin, P., Squires, K., Cabot, W., & Lee, S. 1991, Physics of Fluids A, 3, 2746CrossRefGoogle Scholar
Rempel, M., Schüssler, M., & Knölker, M. 2009, ApJ, 691, 640CrossRefGoogle Scholar
Rempel, M. 2017, ApJ, 834, 10CrossRefGoogle Scholar
Smagorinsky, J. 1963, Monthly Weather Review, 91, 992.3.CO;2>CrossRefGoogle Scholar
Snow, B., Fedun, V., Gent, F. A., Verth, G., & Erdélyi, R. 2018, ApJ, 857, 125CrossRefGoogle Scholar
Stein, R. F. & Nordlund, Å. 2012, ApJ, 753, L13CrossRefGoogle Scholar
Theobald, M. L., Fox, P. A., & Sofia, S. 1994, Physics of Plasmas, 1, 3016CrossRefGoogle Scholar
Vernazza, J. E., Avrett, E. H., & Loeser, R. 1981, ApJS, 45, 635CrossRefGoogle Scholar
Wray, A. A., Bensassi, K., Kitiashvili, I. N., Mansour, N. N., & Kosovichev, A. G. 2018, Realistic Simulations of Stellar Radiative MHD, ed. J. P. Rozelot & E. S. Babayev, 39CrossRefGoogle Scholar