Open Access
Issue |
A&A
Volume 663, July 2022
|
|
---|---|---|
Article Number | A79 | |
Number of page(s) | 32 | |
Section | Planets and planetary systems | |
DOI | https://doi.org/10.1051/0004-6361/202243099 | |
Published online | 18 July 2022 |
- Arakawa, A., & Lamb, V.R. 1977, Gen. Circ. Models Atmos., 17, 173 [CrossRef] [Google Scholar]
- Auclair-Desrotour, P., & Heng, K. 2020, A&A, 638, A77 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Auclair-Desrotour, P., Leconte, J., Bolmont, E., & Mathis, S. 2019a, A&A, 629, A132 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Auclair-Desrotour, P., Leconte, J., & Mergny, C. 2019b, A&A, 624, A17 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Barclay, T., Pepper, J., & Quintana, E.V. 2018, ApJS, 239, 2 [NASA ADS] [CrossRef] [Google Scholar]
- Barnes, R., Raymond, S.N., Jackson, B., & Greenberg, R. 2008, Astrobiology, 8, 557 [NASA ADS] [CrossRef] [Google Scholar]
- Blackadar, A.K. 1962, J. Geophys. Res., 67, 3095 [CrossRef] [Google Scholar]
- Bruhat, G. 1968, Thermodyn. Rev. A. Kastler, 6, 360 [Google Scholar]
- Buckingham, E. 1914, Phys. Rev., 4, 345 [CrossRef] [Google Scholar]
- Carone, L., Keppens, R., & Decin, L. 2014, MNRAS, 445, 930 [NASA ADS] [CrossRef] [Google Scholar]
- Correia, A.C.M., Boué, G., Laskar, J., & Rodriguez, A. 2014, A&A, 571, A50 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Courant, R., Friedrichs, K., & Lewy, H. 1928, Math. Ann., 100, 32 [Google Scholar]
- Deitrick, R., Mendonça, J.M., Schroffenegger, U., et al. 2020, ApJS, 248, 30 [NASA ADS] [CrossRef] [Google Scholar]
- Deming, D., Seager, S., Winn, J., et al. 2009, PASP, 121, 952 [NASA ADS] [CrossRef] [Google Scholar]
- Ding, F., & Pierrehumbert, R.T. 2020, ApJ, 901, L33 [NASA ADS] [CrossRef] [Google Scholar]
- Dobrovolskis, A.R. 2009, Icarus, 204, 1 [CrossRef] [Google Scholar]
- Edson, A., Lee, S., Bannon, P., Kasting, J.F., & Pollard, D. 2011, Icarus, 212, 1 [CrossRef] [Google Scholar]
- Etheridge, D.M., Steele, L.P., Langenfelds, R.L., et al. 1996, J. Geophys. Res., 101, 4115 [NASA ADS] [CrossRef] [Google Scholar]
- Fanale, F.P., Salvail, J.R., Banerdt, W.B., & Saunders, R.S. 1982, Icarus, 50, 381 [NASA ADS] [CrossRef] [Google Scholar]
- Frierson, D.M.W., Held, I.M., & Zurita-Gotor, P. 2006, J. Atmos. Sci., 63, 2548 [NASA ADS] [CrossRef] [Google Scholar]
- Garratt, J.R. 1994, The Atmospheric Boundary Layer (Cambridge University press) [Google Scholar]
- Gerkema, T., & Zimmerman, J. 2008, Lecture Notes, Royal NIOZ, Texel [Google Scholar]
- Gill, A.E. 1980, Q.J.R. Meteorol. Soc., 106, 447 [CrossRef] [Google Scholar]
- Gillon, M., Triaud, A.H.M.J., Demory, B.-O., et al. 2017, Nature, 542, 456 [NASA ADS] [CrossRef] [Google Scholar]
- Gold, T., & Soter, S. 1969, Icarus, 11, 356 [NASA ADS] [CrossRef] [Google Scholar]
- Goldreich, P. 1966, AJ, 71, 1 [NASA ADS] [CrossRef] [Google Scholar]
- Grimm, S.L., Demory, B.-O., Gillon, M., et al. 2018, A&A, 613, A68 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Hammond, M., & Lewis, N.T. 2021, Proc. Natl. Acad. Sci., 118, 2022705118 [NASA ADS] [CrossRef] [Google Scholar]
- Hammond, M., & Pierrehumbert, R.T. 2017, ApJ, 849, 152 [CrossRef] [Google Scholar]
- Hansen, J., Russell, G., Rind, D., et al. 1983, Monthly Weather Rev., 111, 609 [NASA ADS] [CrossRef] [Google Scholar]
- Haqq-Misra, J., Wolf, E.T., Joshi, M., Zhang, X., & Kopparapu, R.K. 2018, ApJ, 852, 67 [NASA ADS] [CrossRef] [Google Scholar]
- Harris, C.R., Millman, K.J., van der Walt, S.J., et al. 2020, Nature, 585, 357 [NASA ADS] [CrossRef] [Google Scholar]
- Held, I.M. 2005, Bull. Am. Meteorol. Soc., 86, 1609 [CrossRef] [Google Scholar]
- Heng, K. 2017, Exoplanetary Atmospheres: Theoretical Concepts and Foundations (Princeton University press) [Google Scholar]
- Heng, K., & Kopparla, P. 2012, ApJ, 754, 60 [NASA ADS] [CrossRef] [Google Scholar]
- Holtslag, A.A.M., & Boville, B.A. 1993, J. Climate, 6, 1825 [NASA ADS] [CrossRef] [Google Scholar]
- Hourdin, F. 1994, Note interne du LMD, 1 [Google Scholar]
- Hourdin, F., Le van, P., Forget, F., & Talagrand, O. 1993, J. Atmos. Sci., 50, 3625 [NASA ADS] [CrossRef] [Google Scholar]
- Hourdin, F., Musat, I., Bony, S., et al. 2006, Climate Dynamics, 27, 787 [NASA ADS] [CrossRef] [Google Scholar]
- Hunter, J.D. 2007, Comput. Sci. Eng., 9, 90 [Google Scholar]
- Hut, P. 1980, A&A, 92, 167 [NASA ADS] [Google Scholar]
- Hut, P. 1981, A&A, 99, 126 [NASA ADS] [Google Scholar]
- Ingersoll, A.P., & Dobrovolskis, A.R. 1978, Nature, 275, 37 [CrossRef] [Google Scholar]
- Innes, H., & Pierrehumbert, R.T. 2022, ApJ, 927, 38 [NASA ADS] [CrossRef] [Google Scholar]
- Joshi, M.M., Haberle, R.M., & Reynolds, R.T. 1997, Icarus, 129, 450 [NASA ADS] [CrossRef] [Google Scholar]
- Joshi, M.M., Elvidge, A.D., Wordsworth, R., & Sergeev, D. 2020, ApJ, 892, L33 [NASA ADS] [CrossRef] [Google Scholar]
- Kasahara, A. 1974, Monthly Weather Rev., 102, 509 [NASA ADS] [CrossRef] [Google Scholar]
- Kasting, J.F., Whitmire, D.P., & Reynolds, R.T. 1993, Icarus, 101, 108 [NASA ADS] [CrossRef] [Google Scholar]
- Koll, D.D.B. 2022, ApJ, 924, 134 [NASA ADS] [CrossRef] [Google Scholar]
- Koll, D.D.B., & Abbot, D.S. 2015, ApJ, 802, 21 [NASA ADS] [CrossRef] [Google Scholar]
- Koll, D.D.B., & Abbot, D.S. 2016, ApJ, 825, 99 [NASA ADS] [CrossRef] [Google Scholar]
- Koll, D.D.B., & Komacek, T.D. 2018, ApJ, 853, 133 [NASA ADS] [CrossRef] [Google Scholar]
- Komacek, T.D., & Showman, A.P. 2016, ApJ, 821, 16 [CrossRef] [Google Scholar]
- Kopparapu, R.K., Ramirez, R., Kasting, J.F., et al. 2013, ApJ, 765, 131 [NASA ADS] [CrossRef] [Google Scholar]
- Kopparapu, R.K., Wolf, E.T., Arney, G., et al. 2017, ApJ, 845, 5 [NASA ADS] [CrossRef] [Google Scholar]
- Lacis, A.A. 1975, J. Atmos. Sci., 32, 1107 [NASA ADS] [CrossRef] [Google Scholar]
- Lacis, A.A., & Oinas, V. 1991, J. Geophys. Res., 96, 9027 [NASA ADS] [CrossRef] [Google Scholar]
- Lauritzen, P.H., Jablonowski, C., Taylor, M.A., & Nair, R.D. 2011, Numerical techniques for global atmospheric models, 80 (Springer Science & Business Media) [Google Scholar]
- Lebonnois, S., Hourdin, F., Eymet, V., et al. 2010, J. Geophys. Res. (Planets), 115, E06006 [CrossRef] [Google Scholar]
- Leconte, J., Forget, F., Charnay, B., et al. 2013, A&A, 554, A69 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Leconte, J., Wu, H., Menou, K., & Murray, N. 2015, Science, 347, 632 [NASA ADS] [CrossRef] [Google Scholar]
- Lee, U., & Saio, H. 1997, ApJ, 491, 839 [Google Scholar]
- Levrard, B., Winisdoerffer, C., & Chabrier, G. 2009, ApJ, 692, L9 [NASA ADS] [CrossRef] [Google Scholar]
- Majewski, D., Liermann, D., Prohl, P., et al. 2002, Monthly Weather Rev., 130, 319 [CrossRef] [Google Scholar]
- Matsuno, T. 1966a, J. Meteorol. Soc. Jpn., 44, 76 [NASA ADS] [CrossRef] [Google Scholar]
- Matsuno, T. 1966b, J. Meteorol. Soc. Jpn., 44, 25 [NASA ADS] [CrossRef] [Google Scholar]
- McKay, C.P., Pollack, J.B., & Courtin, R. 1991, Science, 253, 1118 [NASA ADS] [CrossRef] [Google Scholar]
- Meija, J., Coplen, T.B., Berglund, M., et al. 2016, Pure Appl. Chem., 88, 265 [CrossRef] [Google Scholar]
- Mendonça, J.M., & Buchhave, L.A. 2020, MNRAS, 496, 3512 [CrossRef] [Google Scholar]
- Mendonça, J.M., Grimm, S.L., Grosheintz, L., & Heng, K. 2016, ApJ, 829, 115 [CrossRef] [Google Scholar]
- Mendonça, J.M., Tsai, S.-M., Malik, M., Grimm, S.L., & Heng, K. 2018, ApJ, 869, 107 [CrossRef] [Google Scholar]
- Menou, K., Cho, J.Y.K., Seager, S., & Hansen, B.M.S. 2003, ApJ, 587, L113 [NASA ADS] [CrossRef] [Google Scholar]
- Merlis, T.M., & Schneider, T. 2010, J. Adv. Model. Earth Syst., 2, 13 [Google Scholar]
- Mohr, P.J., Newell, D.B., & Taylor, B.N. 2016, Rev. Mod. Phys., 88, 035009 [NASA ADS] [CrossRef] [Google Scholar]
- Pauluis, O., Czaja, A., & Korty, R. 2008, Science, 321, 1075 [NASA ADS] [CrossRef] [Google Scholar]
- Payne, M.J., & Lodato, G. 2007, MNRAS, 381, 1597 [NASA ADS] [CrossRef] [Google Scholar]
- Peale, S.J. 1977, in IAU Colloq. 28: Planetary Satellites, 87 [Google Scholar]
- Pierrehumbert, R.T. 1995, J Atmos. Sci., 52, 1784 [NASA ADS] [CrossRef] [Google Scholar]
- Pierrehumbert, R.T. 2010, Principles of Planetary Climate (University of Chicago) [CrossRef] [Google Scholar]
- Pierrehumbert, R.T., & Ding, F. 2016, Proc. R. Soc. Lond. A, 472, 20160107 [NASA ADS] [Google Scholar]
- Pierrehumbert, R.T., & Hammond, M. 2019, Annu. Rev. Fluid Mech., 51, 275 [NASA ADS] [CrossRef] [Google Scholar]
- Polvani, L.M., & Kushner, P.J. 2002, Geophys. Res. Lett., 29, 1114 [NASA ADS] [CrossRef] [Google Scholar]
- Press, W.H., Teukolsky, S.A., Vetterling, W.T., & Flannery, B.P. 2007, Numerical Recipes, 3rd edn.: The Art of Scientific Computing (Cambridge University Press) [Google Scholar]
- Ragazzoni, R., Magrin, D., Rauer, H., et al. 2016, SPIE Conf. Ser., 9904, 990428 [NASA ADS] [Google Scholar]
- Raymond, S.N., Scalo, J., & Meadows, V.S. 2007, ApJ, 669, 606 [NASA ADS] [CrossRef] [Google Scholar]
- Rhines, P.B. 1975, J. Fluid Mech., 69, 417 [NASA ADS] [CrossRef] [Google Scholar]
- Robinson, T.D., & Catling, D.C. 2012, ApJ, 757, 104 [CrossRef] [Google Scholar]
- Sadourny, R. 1975a, J. Atmos. Sci., 32, 2103 [NASA ADS] [CrossRef] [Google Scholar]
- Sadourny, R. 1975b, J. Atmos. Sci., 32, 680 [NASA ADS] [CrossRef] [Google Scholar]
- Sergeev, D.E., Lambert, F.H., Mayne, N.J., et al. 2020, ApJ, 894, 84 [NASA ADS] [CrossRef] [Google Scholar]
- Showman, A.P., & Guillot, T. 2002, A&A, 385, 166 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Showman, A.P., & Polvani, L.M. 2011, ApJ, 738, 71 [NASA ADS] [CrossRef] [Google Scholar]
- Showman, A.P., Wordsworth, R.D., Merlis, T.M., & Kaspi, Y. 2013, Atmospheric Circulation of Terrestrial Exoplanets, eds. S.J. Mackwell, A.A. Simon-Miller, J.W. Harder, & M.A. Bullock, 277 [Google Scholar]
- Sobel, A.H., Nilsson, J., & Polvani, L.M. 2001, J. Atmos. Sci., 58, 3650 [CrossRef] [Google Scholar]
- Song, Q., Yang, J., Luo, H., Li, C., & Fu, S. 2021, ArXiv e-prints, [arXiv:2108.04143] [Google Scholar]
- Sukoriansky, S., Galperin, B., & Staroselsky, I. 2005, Phys. Fluids, 17, 085107 [NASA ADS] [CrossRef] [Google Scholar]
- Thomas, L.H. 1949, Watson Sci. Comput. Lab. Rept. (New York: Columbia University) 1 [Google Scholar]
- Thrastarson, H.T., & Cho, J.Y.-K. 2011, ApJ, 729, 117 [NASA ADS] [CrossRef] [Google Scholar]
- Tomita, H., & Satoh, M. 2004, Fluid Dyn. Res., 34, 357 [NASA ADS] [CrossRef] [Google Scholar]
- Tsai, S.-M., Dobbs-Dixon, I., & Gu, P.-G. 2014, ApJ, 793, 141 [NASA ADS] [CrossRef] [Google Scholar]
- Turbet, M., Bolmont, E., Leconte, J., et al. 2018, A&A, 612, A86 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Turbet, M., Fauchez, T.J., Sergeev, D.E., et al. 2021, Planet. Sci. J., submitted [arXiv:2109.11457] [Google Scholar]
- Vallis, G.K. 2006, Atmos. Oceanic Fluid Dyn., 770 [Google Scholar]
- Virtanen, P., Gommers, R., Oliphant, T.E., et al. 2020, Nat. Methods, 17, 261 [NASA ADS] [CrossRef] [Google Scholar]
- Wang, H., & Wordsworth, R. 2020, ApJ, 891, 7 [NASA ADS] [CrossRef] [Google Scholar]
- Wang, F., Cheruy, F., & Dufresne, J.L. 2016, Geoscientific Model Dev., 9, 363 [NASA ADS] [CrossRef] [Google Scholar]
- Wordsworth, R. 2015, ApJ, 806, 180 [NASA ADS] [CrossRef] [Google Scholar]
- Wordsworth, R., Forget, F., & Eymet, V. 2010a, Icarus, 210, 992 [CrossRef] [Google Scholar]
- Wordsworth, R.D., Forget, F., Selsis, F., et al. 2010b, A&A, 522, A22 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
- Yang, J., & Abbot, D.S. 2014, ApJ, 784, 155 [NASA ADS] [CrossRef] [Google Scholar]
- Yao, M.-S., & Stone, P.H. 1987, J. Atmos. Sci., 44, 65 [NASA ADS] [CrossRef] [Google Scholar]
- Yaws, C.L. 1996, Handbook of Thermodynamic Diagrams: Organic compounds C to C4 (Gulf Publishing Company) [Google Scholar]
- Zhang, X., & Showman, A.P. 2017, ApJ, 836, 73 [NASA ADS] [CrossRef] [Google Scholar]
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