Issues

 / 

2021

 / 

August

  

Reviews of topical problems


Gas envelopes of exoplanets—hot Jupiters

 ,  , § , * 
Institute of Astronomy, Russian Academy of Sciences, ul. Pyatnitskaya 48, Moscow, 119017, Russian Federation

We consider the physical characteristics and dynamics of the gaseous envelopes of hot Jupiters (HJs)—gas giants with a mass comparable to Jupiter's and an orbital semiaxis of less than 0.1 a.u. Although HJs were discovered almost a quarter of a century ago, many issues about their origin remain open. There are two reasons for the scientific interest in HJs. The first is the absence of such planets in the Solar System, which is challenging in all cosmogonical theories. The second is that the exoplanet atmospheres' characteristics can now be derived primarily for transit HJs by examining their absorption spectra. Thanks to their large size, such planets can be readily observed, as opposed to others, and their transits can be observed at much higher orbital inclinations. Comparatively recently, in at least some HJs, extended gas envelopes far exceeding their Roche lobes have been found. The paper focuses on the results of theoretical investigations and numerical modeling of the dynamics of HJ envelopes. We also discuss experimental testing of the obtained results and predictions using the planned Russian Spectrum-UV (international name: WSO-UV) and Millimetron space telescopes.

Fulltext pdf (6 MB)
Fulltext is also available at DOI: 10.3367/UFNe.2020.11.038879
Keywords: hot Jupiters, exoplanetary atmospheres, aeronomic models, MHD
PACS: 96.15.Hy
DOI: 10.3367/UFNe.2020.11.038879
URL: https://ufn.ru/en/articles/2021/8/a/
000711503200001
2-s2.0-85119125072
2021PhyU...64..747B
Citation: Bisikalo D V, Shematovich V I, Kaygorodov P V, Zhilkin A G "Gas envelopes of exoplanets—hot Jupiters" Phys. Usp. 64 747–800 (2021)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Received: 1st, June 2020, revised: 9th, November 2020, 20th, November 2020

Оригинал: Бисикало Д В, Шематович В И, Кайгородов П В, Жилкин А Г «Газовые оболочки экзопланет—горячих юпитеров» УФН 191 785–845 (2021); DOI: 10.3367/UFNr.2020.11.038879

References (210) ↓ Cited by (14) Similar articles (20)

  1. Mayor M, Queloz D Nature 378 355 (1995)
  2. Safronov V S Evolyutsiya Doplanetnogo Oblaka i Obrazovanie Zemli i Planet (M.: Nauka, 1969); Per. na angl. yaz., Safronov V S Evolution Of The Protoplanetary Cloud And Formation Of The Earth And The Planets (Jerusalem: Israel Program for Scientific Translations, 1972)
  3. Pollack J B et al Icarus 124 62 (1996)
  4. Marov M Ya Usp. Fiz. Nauk 175 668 (2005); Marov M Ya Phys. Usp. 48 638 (2005)
  5. Marov M "The formation and evolution of the solar system" Oxford Research Encyclopedia Of Planetary Science (Eds P Read et al) (Oxford: Oxford Univ. Press, 2018), id 2
  6. Dawson R I, Johnson J A Annu. Rev. Astron. Astrophys. 56 175 (2018)
  7. Paardekooper S-J, Johansen A Space Sci. Rev. 214 38 (2018)
  8. Morbidelli A Handbook Of Exoplanets (Eds H J Deeg, J A Belmonte) (Cham: Springer, 2018) p. 2523
  9. Batygin K, Bodenheimer P H, Laughlin G P Astrophys. J. 829 114 (2016)
  10. Guo X et al Astrophys. J. 838 25 (2017)
  11. Vidal-Madjar A et al Nature 422 143 (2003)
  12. Ben-Jaffel L Astrophys. J. 671 L61 (2007)
  13. Vidal-Madjar A et al Astrophys. J. 604 L69 (2004)
  14. Ben-Jaffel L, Sona Hosseini S Astrophys. J. 709 1284 (2010)
  15. Linsky J L et al Astrophys. J. 717 1291 (2010)
  16. Fossati L et al Astrophys. J. 714 L222 (2010)
  17. Lecavelier des Etangs A et al Astron. Astrophys. 543 L4 (2012)
  18. Lammer H et al Astrophys. J. 598 L121 (2003)
  19. Yelle R V Icarus 170 167 (2004)
  20. García Muñoz A Planet. Space Sci. 55 1426 (2007)
  21. Murray-Clay R A, Chiang E I, Murray N Astrophys. J. 693 23 (2009)
  22. Koskinen T T et al Icarus 226 1678 (2013)
  23. Shaikhislamov I F et al Astrophys. J. 795 132 (2014)
  24. Khodachenko M L et al Astrophys. J. 813 50 (2015)
  25. Shaikhislamov I F et al Astrophys. J. 832 173 (2016)
  26. Shematovich V I, Ionov D E, Lammer H Astron. Astrophys. 571 A94 (2014)
  27. Shematovich V I, Bisikalo D V, Ionov D E Characterizing Stellar And Exoplanetary Environments (Astrophysics and Space Science Library) Vol. 411 (Eds H Lammer, M Khodachenko) (Cham: Springer, 2015) p. 105
  28. Bisikalo D et al Astrophys. J. 764 19 (2013)
  29. Bisikalo D V Astron. Zhurn. 90 779 (2013); Bisikalo D V et al Astron. Rep. 57 715 (2013)
  30. Haswell C A et al Astrophys. J. 760 79 (2012)
  31. Nichols J D et al Astrophys. J. 803 9 (2015)
  32. Grodent D, Waite J H (Jr.), Gérard J-C J. Geophys. Res. 106 12933 (2001)
  33. Marov M Ya, Shematovich V I, Bisikalo D V Space Sci. Rev. 76 1 (1996)
  34. Seager S, Deming D Annu. Rev. Astron. Astrophys. 48 631 (2010)
  35. Madhusudhan N Annu. Rev. Astron. Astrophys. 57 617 (2019)
  36. Massol H et al Space Sci. Rev. 205 153 (2016)
  37. Shematovich V I, Marov M Ya Usp. Fiz. Nauk 188 233 (2018); Shematovich V I, Marov M Ya Phys. Usp. 61 217 (2018)
  38. Owen J E Annu. Rev. Earth Planet. Sci. 47 67 (2019)
  39. Johnson R E et al Space Sci. Rev. 139 355 (2008)
  40. Lammer H Origin And Evolution Of Planetary Atmospheres: Implications For Habitability (Heidelberg: Springer, 2013)
  41. Holmström M et al Nature 451 970 (2008)
  42. Shematovich V I Uspekhi Khimii 88 1013 (2019); Shematovich V I Russ. Chem. Rev. 88 1013 (2019)
  43. Tian F et al Science 308 1014 (2005)
  44. Erkaev N V et al Astrobiology 13 1011 (2013)
  45. Luger R, Barnes R Astrobiology 15 119 (2015)
  46. Bisikalo D V, Shematovich V I Origins: from the Protosun to the First Steps of Life: Proc. of the 345th Symp. of the Intern. Astronomical Union, Vienna, Austria, 20 - 23 August, 2018 (Proc. IAU Symp.) Vol. 345 (Eds B G Elmegreen, L V Tóth, M Güdel) (Cambridge: Cambridge Univ. Press, 2019) p. 345
  47. Shematovich V I Astron. Vestn. 44 108 (2010); Shematovich V I Solar Syst. Res. 44 96 (2010)
  48. Ionov D E Astron. Vestn. 48 113 (2014); Ionov D E et al Solar Syst. Res. 48 105 (2014)
  49. Shematovich V I et al J. Geophys. Res. Planets 113 E02011 (2008)
  50. Garvey R H, Green A E S Phys. Rev. A 14 946 (1976)
  51. Jackman C H, Garvey R H, Green A E S J. Geophys. Res. 82 5081 (1977)
  52. Garvey R H, Porter H S, Green A E S J. Appl. Phys. 48 190 (1977)
  53. Shyn T W, Sharp W E Phys. Rev. A 24 1734 (1981)
  54. Dalgarno A, Yan M, Liu W Astrophys. J. Suppl. 125 237 (1999)
  55. Kawahara H et al Astrophys. J. 776 L6 (2013)
  56. Watson A J, Donahue T M, Walker J C G Icarus 48 150 (1981)
  57. Chassefière E J. Geophys. Res. 101 26039 (1996)
  58. Koskinen T T et al Icarus 226 1695 (2013)
  59. Lammer H et al Mon. Not. R. Astron. Soc. 439 3225 (2014)
  60. Ionov D E, Shematovich V I Astron. Vestn. 49 373 (2015); Ionov D E, Shematovich V I Solar Syst. Res. 49 339 (2015)
  61. Linsky J L, Güdel M Characterizing Stellar And Exoplanetary Environments (Astrophysics and Space Science Library) Vol. 411 (Eds H Lammer,M Khodachenko) (Cham: Springer, 2015) p. 3
  62. Waite J H et al J. Geophys. Res. 88 6143 (1983)
  63. Majeed T et al J. Geophys. Res. Planets 114 E07005 (2009)
  64. Badman S V et al Space Sci. Rev. 187 99 (2015)
  65. Nichols J D Mon. Not. R. Astron. Soc. 414 2125 (2011)
  66. Bonfond B et al J. Geophys. Res. Space Phys. 122 7985 (2017)
  67. Bonfond B et al Geophys. Res. Lett. 39 L01105 (2012)
  68. Kislyakova K G et al Science 346 981 (2014)
  69. Lavvas P, Koskinen T, Yelle R V Astrophys. J. 796 15 (2014)
  70. Bourrier V, Lecavelier des Etangs A, Vidal-Madjar A Astron. Astrophys. 565 A105 (2014)
  71. Bisikalo D V, Shematovich V I Astron. Zhurn. 92 713 (2015); Bisikalo D V, Shematovich V I Astron. Rep. 59 836 (2015)
  72. Bisikalo D V et al Icarus 282 127 (2017)
  73. Hardy D A, Gussenhoven M S, Holeman E J. Geophys. Res. 90 4229 (1985)
  74. Pavlyuchenkov Ya N Astron. Zhurn. 92 154 (2015); Pavlyuchenkov Ya N et al Astron. Rep. 59 133 (2015)
  75. Ionov D E, Shematovich V I, Pavlyuchenkov Ya N Astron. Zhurn. 94 381 (2017); Ionov D E, Shematovich V I, Pavlyuchenkov Ya N Astron. Rep. 61 387 (2017)
  76. Samarskii A A, Popov Yu P Raznostnye Metody Resheniya Zadach Gazovoi Dinamiki (M.: Nauka, 1992)
  77. Withbroe G L Astrophys. J. 325 442 (1988)
  78. Huebner W F, Keady J J, Lyon S P Astrophys. Space Sci. 195 1 (1992)
  79. Bisikalo D V et al Astrophys. J. 869 108 (2018)
  80. Lecavelier Des Etangs A et al Astron. Astrophys. 514 A72 (2010)
  81. Fossati L et al Astrophys. J. 720 872 (2010)
  82. Lai Dong, Helling Ch, van den Heuvel E P J Astrophys. J. 721 923 (2010)
  83. Li Shu Lin et al Nature 463 1054 (2010)
  84. Vidotto A A, Jardine M, Helling Ch Astrophys. J. 722 L168 (2010)
  85. Vidotto A A, Jardine M, Helling Ch Mon. Not. R. Astron. Soc. 411 L46 (2011)
  86. Vidotto A A, Jardine M, Helling Ch Mon. Not. R. Astron. Soc. 414 1573 (2011)
  87. Boyarchuk A A et al Mass Transfer In Close Binary Stars: Gas Dynamical Treatment (Advances in Astronomy and Astrophysics) Vol. 6 (London: Taylor and Francis, 2002)
  88. Bisikalo D V, Zhilkin A G, Boyarchuk A A Gazodinamika Tesnykh Dvoinykh Zvezd (M.: Fizmatlit, 2013)
  89. Kopal Z Close Binary Systems (New York: Wiley, 1959)
  90. Plavec M, Kratochvil P Bull. Astron. Inst. Czechslov. 15 165 (1964)
  91. Savonije G J Astron. Astrophys. 71 352 (1979)
  92. Pringle J E, Wade R A (Eds) Interacting Binary Stars (Cambridge Astrophysics Serie) Vol. 6 (Cambridge: Cambridge Univ. Press, 1985)
  93. Bisikalo D V, Kaygorodov P V, Arakcheev A S Living Together Planets, Host Stars, and Binaries. Proc. of a Conf., Litomyšl, Czech Republic, 8 - 12 September 2014 (Astronomical Society of the Pacific Conf. Ser.) Vol. 496 (Eds S M Rucinski, G Torres, M Zejda) (San Francisco, CA: Astronomical Society of the Pacific, 2015) p. 337
  94. Landau L D, Lifshits E M Gidrodinamika (M.: Nauka, 1988); Per. na russk. yaz., Landau L D, Lifshitz E M Fluid Mechanics (Oxford: Pergamon Press, 1987)
  95. Baranov V B, Krasnobaev K V Gidrodinamicheskaya Teoriya Kosmicheskoi Plazmy (M.: Nauka, 1977)
  96. Verigin M et al J. Geophys. Res. Space Phys. 108 1323 (2003)
  97. Koskinen T T et al Astrophys. J. 723 116 (2010)
  98. Lubow S H, Shu F H Astrophys. J. 198 383 (1975)
  99. Cherenkov A A, Bisikalo D V, Kaigorodov P V Astron. Zhurn. 91 775 (2014); Cherenkov A A, Bisikalo D V, Kaigorodov P V Astron. Rep. 58 679 (2014)
  100. Bisikalo D V Astron. Zhurn. 81 494 (2004); Bisikalo D V et al Astron. Rep. 48 449 (2004)
  101. Bourrier V, Lecavelier des Etangs A Astron. Astrophys. 557 A124 (2013)
  102. Katushkina O A, Izmodenov V V Pis’ma Astron. Zhurn. 36 310 (2010); Katushkina O , Izmodenov V V Astron. Rep. 36 297 (2010)
  103. Cherenkov A A, Bisikalo D V, Kosovichev A G Mon. Not. R. Astron. Soc. 475 605 (2018)
  104. Curdt W et al Astron. Astrophys. 375 591 (2001)
  105. Wiese W L, Smith M W, Glennon B M Atomic Transition Probabilities. A Critical Data Compilation Vol. 1 Hydrogen Through Neon (Washington, DC: U.S. Dept. of Commerce, National Bureau of Standards, 1966)
  106. Brasken M, Kyrola E Astron. Astrophys. 332 732 (1998)
  107. Roe P L Seventh Intern. Conf. on Numerical Methods in Fluid Dynamics. Proc. of the Conf., Stanford, CA, June 23 - 27, 1980 (Lecture Notes in Physics) Vol. 141 (Eds W C Reynolds, R W MacCormack) (Berlin: Springer, 1981) p. 354
  108. Balsara D Astrophys. J. Suppl. 132 83 (2001)
  109. Cantó J et al Astrophys. J. 502 695 (1998)
  110. Scholz T T, Walters H R J Astrophys. J. 380 302 (1991)
  111. Møller P, Jakobsen P Astron. Astrophys. 228 299 (1990)
  112. Schneiter E M et al Mon. Not. R. Astron. Soc. 457 1666 (2016)
  113. Sanz-Forcada J et al Astron. Astrophys. 532 A6 (2011)
  114. Sanz-Forcada J et al The HIPPARCOS And TYCHO Catalogues. Astrometric And Photometric Star Catalogues Derived From The ESA HIPPARCOS Space Astrometry Mission (ESA Special Publ. Ser., No. 1200) (Noordwijk: ESA Publ. Division, 1997)
  115. Ermolaev A M J. Phys. B 21 81 (1988)
  116. Boyajian T et al Mon. Not. R. Astron. Soc. 447 846 (2015)
  117. Callaway J Phys. Lett. A 48 359 (1974)
  118. Bell K L, Kingston A E Proc. Phys. Soc. 90 895 (1967)
  119. Inokuti M, Kim Y K Phys. Rev. 173 154 (1968)
  120. Bell K L, Kingston A E, McIlveen W A J. Phys. B 8 358 (1975)
  121. Bisikalo D V, Kaigorodov P V, Konstantinova N I Astron. Zhurn. 92 705 (2015); Bisikalo D V, Kaigorodov P V, Konstantinova N I Astron. Rep. 59 829 (2015)
  122. Shaikhislamov I F et al Mon. Not. R. Astron. Soc. 481 5315 (2018)
  123. Dwivedi N K et al Mon. Not. R. Astron. Soc. 487 4208 (2019)
  124. Shaikhislamov I F et al Mon. Not. R. Astron. Soc. 491 3435 (2020)
  125. Grießmeier J M et al Astron. Astrophys. 425 753 (2004)
  126. Sánchez-Lavega A Astrophys. J. 609 L87 (2004)
  127. Stevenson D J Rep. Prog. Phys. 46 555 (1983)
  128. Showman A P, Guillot T Astron. Astrophys. 385 166 (2002)
  129. Jones C A Annu. Rev. Fluid Mech. 43 583 (2011)
  130. Jones C A Icarus 241 148 (2014)
  131. Braginskii S I Zh. Eksp. Teor. Fiz. 47 2178 (1964); Braginskii S I Sov. Phys. JETP 20 1462 (1965)
  132. Parker E N Cosmical Magnetic Fields : Their Origin And Their Activity (Oxford: Clarendon Press, 1979)
  133. Cowling T G Mon. Not. R. Astron. Soc. 94 39 (1933)
  134. Batygin K, Stanley S, Stevenson D J Astrophys. J. 776 53 (2013)
  135. Rogers T M, Showman A P Astrophys. J. 782 L4 (2014)
  136. Rogers T M, Komacek T D Astrophys. J. 794 132 (2014)
  137. Rogers T M Nat. Astron. 1 0131 (2017)
  138. Moore K M et al Nature 561 76 (2018)
  139. Erkaev N V et al Mon. Not. R. Astron. Soc. 470 4330 (2017)
  140. Zhilkin A G, Bisikalo D V Astron. Zhurn. 96 547 (2019); Zhilkin A G, Bisikalo D V Astron. Rep. 63 550 (2019)
  141. Belen’kaya E S Usp. Fiz. Nauk 179 809 (2009); Belenkaya E S Phys. Usp. 52 765 (2009)
  142. Russell C T Rep. Prog. Phys. 56 687 (1993)
  143. Ip W H, Kopp A, Hu J H Astrophys. J. 602 L53 (2004)
  144. Koskinen T T et al Astrophys. J. 722 178 (2010)
  145. Trammell G B, Arras P, Li Z Y Astrophys. J. 728 152 (2011)
  146. Trammell G B, Li Z Y, Arras P Astrophys. J. 788 161 (2014)
  147. Matsakos T, Uribe A, Königl A Astron. Astrophys. 578 A6 (2015)
  148. Arakcheev A S Astron. Zhurn. 94 927 (2017); Arakcheev A S et al Astron. Rep. 61 932 (2017)
  149. Bisikalo D V, Arakcheev A S, Kaigorodov P V Astron. Zhurn. 94 920 (2017); Bisikalo D V, Arakcheev A S, Kaigorodov P V Astron. Rep. 61 925 (2017)
  150. Zhilkin A G, Bisikalo D V, Kaigorodov P V Astron. Zhurn. 97 145 (2020); Zhilkin A G, Bisikalo D V, Kaygorodov P V Astron. Rep. 64 159 (2020)
  151. Zhilkin A G, Bisikalo D V, Kaigorodov P V Astron. Zhurn. 97 242 (2020); Zhilkin A G, Bisikalo D V, Kaygorodov P V Astron. Rep. 64 259 (2020)
  152. Zhilkin A G, Bisikalo D V Astron. Zhurn. 97 538 (2020); Zhilkin A G, Bisikalo D V Astron. Rep. 97 538 (2020)
  153. Zhilkin A G, Bisikalo D V, Boyarchuk A A Usp. Fiz. Nauk 182 121 (2012); Zhilkin A G, Bisikalo D V, Boyarchuk A A Phys. Usp. 55 115 (2012)
  154. Tanaka T J. Comput. Phys. 111 381 (1994)
  155. Powell K G et al J. Comput. Phys. 154 284 (1999)
  156. Lax P D Commun. Pure Appl. Math. 7 159 (1954)
  157. Friedrichs K O Commun. Pure Appl. Math. 7 345 (1954)
  158. Rusanov V V Zhurn. Vychisl. Matem. Matem. Fiz. 1 267 (1961); Rusanov V V USSR Comput. Math. Math.Phys. 1 304 (1962)
  159. Cargo P, Gallice G J. Comput. Phys. 136 446 (1997)
  160. Kulikovskii A G, Pogorelov N V, Semenov A Yu Matematicheskie Voprosy Chislennogo Resheniya Giperbolicheskikh Sistem Uravnenii (M.: Fizmatlit, 2001); Per. na angl. yaz., Kulikovskii A G, Pogorelov N V, Semenov A Yu Mathematical Aspects Of Numerical Solution Of Hyperbolic System (Chapman and Hall Monographs and Surveys in Pure and Applied Mathematics) Vol. 118 (Boca Raton, FL: Chapman and Hall. CRC, 2001)
  161. Chakravarthy S R, Osher S Proc. of the 23rd Aerospace Sciences Meeting, 14 - 17 January 1985, Reno, NV, USA, No. 85 AIAA (Reston, VA: AIAA, 1985) p. 363; Chakravarthy S R, Osher S https://arc.aiaa.org/doi/abs/10.2514/6.1985-363
  162. Zhilkin A G Astron. Zhurn. 96 748 (2019); Zhilkin A G et al Astron. Rep. 63 751 (2019)
  163. Einfeldt B SIAM J. Numer. Anal. 25 294 (1988)
  164. Harten A, Hyman J M J. Comput. Phys. 50 235 (1983)
  165. Dedner A et al J. Comput. Phys. 175 645 (2002)
  166. Farrell W M et al Bioastronomy 2002: Life Among the Stars. Proc. of the 213th Symp. of the Intern. Astronomical Union Hamilton Island, Great Barrier Reef, Australia (Eds R P Norris, F H Stootman) (San Francisco, CA: Astronomical Society of the Pacific, 2004) p. 73
  167. Weber C et al Mon. Not. R. Astron. Soc. 469 3505 (2017)
  168. Wu C S, Lee L C Astrophys. J. 230 621 (1979)
  169. Owens M J, Forsyth R J Living Rev. Solar Phys. 10 5 (2013)
  170. Parker E N Astrophys. J. 128 664 (1958)
  171. Weber E J, Davis L (Jr.) Astrophys. J. 148 217 (1967)
  172. Brandt J C, Wolff C, Cassinelli J P Astrophys. J. 156 1117 (1969)
  173. Sakurai T Sol. Phys. 76 301 (1982)
  174. Goelzer M L, Schwadron N A, Smith C W J. Geophys. Res. Space Phys. 119 115 (2014)
  175. Fabbian D et al Astron. Nachrichten 338 753 (2017)
  176. Lammer H et al Earth Planets Space 64 179 (2012)
  177. Khodachenko M L et al Astrophys. J. 744 70 (2012)
  178. Mestel L Mon. Not. R. Astron. Soc. 138 359 (1968)
  179. Alexeev I I, Belenkaya E S Ann. Geophys. 23 809 (2005)
  180. Charbonneau D et al Astrophys. J. 529 L45 (2000)
  181. Khodachenko M L et al Astrophys. J. 885 67 (2019)
  182. Awiphan S et al Mon. Not. R. Astron. Soc. 463 2574 (2016)
  183. Chen F F Introduction To Plasma Physics And Controlled Fusion Vol. 1 Plasma Physics (New York: Plenum Press, 1984)
  184. Maehara H et al Nature 485 478 (2012)
  185. Shibayama T et al Astrophys. J. Suppl. 209 5 (2013)
  186. Maehara H et al Earth Planets Space 67 59 (2015)
  187. Vourlidas A et al Astrophys. J. 722 1522 (2010)
  188. Webb D F, Howard T A Living Rev. Solar Phys. 9 3 (2012)
  189. Bisikalo D V, Cherenkov A A Astron. Zhurn. 93 139 (2016); Bisikalo D V, Cherenkov A A Astron. Rep. 60 183 (2016)
  190. Cherenkov A et al Astrophys. J. 846 31 (2017)
  191. Bisikalo D V Astron. Zhurn. 95 686 (2018); Bisikalo D V et al Astron. Rep. 62 648 (2018)
  192. Cherenkov A A, Bisikalo D V Sbornik trudov memorial’noi konf. 2018 g., posvyashchennoi pamyati akademika A.A. Boyarchuka (Sbornik nauchnykh trudov INASAN) Vol. 1 (Pod red. D V Bisikalo, D Z Vibe) (M.: Yanus-K, 2018) p. 265
  193. Cherenkov A A Astron. Zhurn. 96 106 (2019); Cherenkov A A et al Astron. Rep. 63 94 (2019)
  194. Kaigorodov P V, Il’ina E A, Bisikalo D V Astron. Zhurn. 96 367 (2019); Kaigorodov P V, Ilyina E A, Bisikalo D V Astron. Rep. 63 365 (2019)
  195. Ionov D E, Pavlyuchenkov Ya N, Shematovich V I Mon. Not. R. Astron. Soc. 476 5639 (2018)
  196. Veronig A et al Astron. Astrophys. 382 1070 (2002)
  197. Tsurutani B T et al Geophys. Res. Lett. 32 L03S09 (2005)
  198. Khodachenko M L et al Astrobiology 7 167 (2007)
  199. Lammer H et al Astrobiology 7 185 (2007)
  200. Kay C et al Astrophys. J. 827 70 (2016)
  201. Farrell W M et al J. Geophys. Res. Planets 117 E00K04 (2012)
  202. Möstl C et al Astrophys. J. 787 119 (2014)
  203. Richardson I G, Cane H V Solar Phys. 264 189 (2010)
  204. Kaigorodov P V, Il’ina E A Nauch. Trudy In-ta Astronomii RAN 3 124 (2019)
  205. Bisikalo D V, Cherenkov A A, Kaygorodov P V Solar and Stellar Flares and their Effects on Planets: Proc. of the 320th Symp. of the International Astronomical Union, Honolulu, United States, August 11 - 14, 2015 (IAU Symp.) Vol. 320 (Eds A G Kosovichev, S L Hawley, P Heinzel) (Cambridge: Cambridge Univ. Press, 2016) p. 224
  206. Johnstone C P et al Astron. Astrophys. 577 A122 (2015)
  207. Vidotto A A et al 18th Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun, Proc. of the Conf. Lowell Observatory, 8 - 14 June, 2014 (Eds G T van Belle, H C Harris) (San Francisco, CA: Astronomical Society of the Pacific, 2015) p. 65
  208. Czesla S et al Astron. Astrophys. 629 A5 (2019)
  209. Kurbatov E P, Bisikalo D V, Shaikhislamov I F Astron. Zhurn. 97 986 (2020); Kurbatov E P, Bisikalo D V, Shaikhislamov I F Astron. Rep. 64 1016 (2020)
  210. Sproß L et al Astron. Rep. 65 275 (2021)

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions