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Abstract

Massive stars have strong stellar winds that direct their evolution through the upper Hertzsprung–Russell diagram and determine the black hole mass function. Furthermore, wind strength dictates the atmospheric structure that sets the ionizing flux. Finally, the wind directly intervenes with the stellar envelope structure, which is decisive for both single-star and binary evolution, affecting predictions for gravitational wave events. Key findings of current hot star research include:

  • ▪  The traditional line-driven wind theory is being updated with Monte Carlo and comoving frame computations, revealing a rich multivariate behavior of the mass-loss rate in terms of , , Eddington Γ, , and chemical composition . Concerning the latter, is shown to depend on the iron (Fe) opacity, making Wolf–Rayet populations, and gravitational wave events dependent on host galaxy .
  • ▪  On top of smooth mass-loss behavior, there are several transitions in the Hertzsprung–Russell diagram, involving bistability jumps around Fe recombination temperatures, leading to quasi-stationary episodic, and not necessarily eruptive, luminous blue variable and pre-SN mass loss.
  • ▪  Furthermore, there are kinks. At 100 a high Γ mass-loss transition implies that hydrogen-rich, very massive stars have higher mass-loss rates than commonly considered. At the other end of the mass spectrum, low-mass stripped helium stars no longer appear as Wolf–Rayet stars but as optically thin stars. These stripped stars, in addition to very massive stars, are two newly identified sources of ionizing radiation that could play a key role in local star formation as well as at high redshift.

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Literature Cited

  1. Abbott BP, Abbott R, Abbott TD et al. 2016. Ap. J. Lett. 818:L22
  2. Abbott DC. 1982. Ap. J. 259:282–301
  3. Abbott DC, Bieging JH, Churchwell E. 1981. Ap. J. 250:645–59
  4. Abbott DC, Lucy LB. 1985. Ap. J. 288:679–93
  5. Abbott R, Abbott TD, Abraham S et al. 2020. Ap. J. Lett. 900:L13
  6. Aerts C, Mathis S, Rogers TM. 2019. Annu. Rev. Astron. Astrophys. 57:35–78
  7. Andrews H, Fenech D, Prinja RK, Clark JS, Hindson L. 2019. Astron. Astrophys. 632:A38
  8. Barkat Z, Rakavy G, Sack N. 1967. Phys. Rev. Lett. 18:379–81
  9. Benaglia P, Vink JS, Martí J et al. 2007. Astron. Astrophys. 467:1265–74
  10. Bestenlehner JM. 2020. MNRAS 493:3938–46
  11. Bestenlehner JM, Gräfener G, Vink JS et al. 2014. Astron. Astrophys. 570:A38
  12. Belczynski K, Bulik T, Fryer CL et al. 2010. Ap. J. 714:1217–26
  13. Björklund R, Sundqvist JO, Puls J, Najarro F. 2021. Astron. Astrophys. 648:A36
  14. Bjorkman JE, Cassinelli JP. 1993. Ap. J. 409:429–49
  15. Bouret J-C, Lanz T, Hillier DJ et al. 2003. Ap. J. 595:1182–205
  16. Bouret J-C, Lanz T, Hillier DJ et al. 2015. MNRAS 449:1545–69
  17. Bouret J-C, Lanz T, Martins F et al. 2013. Astron. Astrophys. 555:A1
  18. Bowman DM. 2020. Front. Astron. Space Sci. 7:578584
  19. Bowman DM, Burssens S, Pedersen MG et al. 2019. Nat. Astron. 3:760–65
  20. Brands SA, de Koter A, Joachim M et al. 2022. arXiv:2202.11080
  21. Brott I, de Mink SE, Cantiello M et al. 2011. Astron. Astrophys. 530:A115
  22. Cantiello M, Langer N, Brott I et al. 2009. Astron. Astrophys. 499:279–90
  23. Cantiello M, Lecoanet D, Jermyn AS, Grassitelli L. 2021. Ap. J. 915:112
  24. Carneiro LP, Puls J, Sundqvist JO, Hoffmann TL. 2016. Astron. Astrophys. 590:A88
  25. Castor J, Abbott DC, Klein RI. 1975. Ap. J. 195:157–74
  26. Castro N, Fossati L, Langer N et al. 2014. Astron. Astrophys. 570:L13
  27. Chevalier RA, Fransson C. 1994. Ap. J. 420:268–85
  28. Chugai NN, Blinnikov SI, Cumming RJ et al. 2004. MNRAS 352:1213–31
  29. Code AD, Whitney BA. 1995. Ap. J. 441:400–7
  30. Conti PS. 1975. Mem. Soc. R. Sci. Liege 9:193–212
  31. Corless RM, Gonnet GH, Hare DEG, Jeffrey DJ. 1993. Maple Tech. Newsl. 9:12–22
  32. Crowther PA. 2007. Annu. Rev. Astron. Astrophys. 45:177–219
  33. Crowther PA, Caballero-Nieves SM, Bostroem KA et al. 2016. MNRAS 458:624–59
  34. Crowther PA, Dessart L, Hillier DJ, Abbott JB, Fullerton AW. 2002. Astron. Astrophys. 392:653–69
  35. Crowther PA, Lennon DJ, Walbor NR. 2006. Astron. Astrophys. 446:279–93
  36. Crowther PA, Schnurr O, Hirschi R et al. 2010. MNRAS 408:731–51
  37. Davies B, Crowther PA, Beasor ER. 2018. MNRAS 478:3138–48
  38. Davies B, Oudmaijer RD, Vink JS. 2005. Astron. Astrophys. 439:1107–25
  39. Davies B, Vink JS, Oudmaijer RD. 2007. Astron. Astrophys. 469:1045–56
  40. de Almeida ESG, Marcolino WLF, Bouret J-C, Pereira CB. 2019. Astron. Astrophys. 628:A36
  41. De Becker M. 2007. Astron. Astrophys. Rev. 14:171–216
  42. de Jager C, Nieuwenhuijzen H, van der Hucht KA. 1988. Astron. Astrophys. Suppl. 72:259–89
  43. de Koter A, Heap SR, Hubeny I. 1997. Ap. J. 477:792–816
  44. Decin L. 2021. Annu. Rev. Astron. Astrophys. 59:337–89
  45. Dessart L, Hillier DJ, Gezari S, Basa S, Matheson T. 2009. MNRAS 394:21–37
  46. Drew JE. 1989. Ap. J. Suppl. 71:267–91
  47. Driessen FA, Sundqvist JO, Kee ND. 2019. Astron. Astrophys. 631:A172
  48. Ekström S, Georgy C, Eggenberger P et al. 2012. Astron. Astrophys. 537:A146
  49. Eldridge JJ, Stanway E. 2022. Annu. Rev. Astron. Astrophys. 60:45594
  50. Eldridge JJ, Vink JS. 2006. Astron. Astrophys. 452:295–301
  51. Evans CJ, Taylor WD, Hénault-Brunet V et al. 2011. Astron. Astrophys. 530:A108
  52. Feldmeier A, Oskinova L, Hamann W-R. 2003. Astron. Astrophys. 403:217–24
  53. Fenech DM, Clark JS, Prinja RK et al. 2018. Astron. Astrophys. 617:A137
  54. Filippenko AV. 1997. Annu. Rev. Astron. Astrophys. 35:309–55
  55. Fraser M, Inserra C, Jerkstrand A et al. 2013. MNRAS 433:1312–37
  56. Friend DB, Abbott DC. 1986. Ap. J. 311:701–7
  57. Fullerton AW, Massa DL, Prinja RK. 2006. Ap. J. 637:1025–39
  58. Gagnier D, Rieutord M, Charbonnel C. 2019. Astron. Astrophys. 625:A88
  59. Gal-Yam A, Arcavi I, Ofek EO et al. 2014. Nature 509:471–74
  60. Gal-Yam A, Leonard DC. 2009. Nature 458:865–67
  61. Garcia M, Herrero A, Najarro F, Lennon DJ, Urbaneja M. 2014. Ap. J. 788:64
  62. Gayley KG, Owocki SP, Cranmer SR. 1995. Ap. J. 442:296–310
  63. Gilkis A, Shenar T, Ramachandran V et al. 2021. MNRAS 503:1884–96
  64. Gilkis A, Vink JS, Eldridge JJ, Tout CA. 2019. MNRAS 486:4451–62
  65. Glatzel W, Kiriakidis M, Fricke KJ. 1993. MNRAS 262:L7–11
  66. Gormaz-Matamala AC, Curé M, Hillier DJ et al. 2021. Ap. J. 920:64
  67. Götberg Y, de Mink SE, McQuinn M et al. 2020. Astron. Astrophys. 634:A134
  68. Gräfener G, Hamann W-R. 2005. Astron. Astrophys. 432:633–45
  69. Gräfener G, Hamann W-R. 2008. Astron. Astrophys. 482:945–60
  70. Gräfener G, Koesterke L, Hamann W-R. 2002. Astron. Astrophys. 387:244–57
  71. Gräfener G, Owocki SP, Grassitelli L, Langer N. 2017. Astron. Astrophys. 608:A34
  72. Gräfener G, Owocki SP, Vink JS. 2012. Astron. Astrophys. 538:A40
  73. Gräfener G, Vink JS. 2015. Astron. Astrophys. 578:L2
  74. Gräfener G, Vink JS. 2016. MNRAS 455:112–26
  75. Grassitelli L, Langer N, Grin NJ et al. 2018. Astron. Astrophys. 614:A86
  76. Grassitelli L, Langer N, Mackey J et al. 2021. Astron. Astrophys. 647:A99
  77. Groh JH. 2014. Astron. Astrophys. 572:L11
  78. Groh JH, Hillier DJ, Damineli A et al. 2009. Ap. J. 698:1698–720
  79. Groh JH, Meynet G, Ekström S, Georgy C 2014. Astron. Astrophys. 564:A30
  80. Groh JH, Vink JS. 2011. Astron. Astrophys. 531:L10
  81. Gvaramadze VV, Langer N, Mackey J. 2012. MNRAS 427:L50–54
  82. Hainich R, Pasemann D, Todt H et al. 2015. Astron. Astrophys. 581:A21
  83. Hainich R, Rühling U, Todt H et al. 2014. Astron. Astrophys. 565:A27
  84. Hamann W-R, Feldmeier A, Oskinova LM, eds. 2008. Clumping in Hot-Star Winds Proceedings of an International Workshop held in Potsdam, Germ., June 18–22, 2007 Potsdam, Germ: Universitätsverlag Potsdam
  85. Hamann W-R, Gräfener G, Liermann A et al. 2019. Astron. Astrophys. 625:A57
  86. Hamann W-R, Koesterke L, Wessolowski U. 1995. Astron. Astrophys. 299:151–62
  87. Harries TJ. 2000. MNRAS 315:722–34
  88. Harries TJ, Howarth ID, Evans CJ. 2002. MNRAS 337:341–55
  89. Hawcroft C, Sana H, Mahy L et al. 2021. Astron. Astrophys. 655:A67
  90. Heger A, Jeannin L, Langer N, Baraffe I. 1997. Astron. Astrophys. 327:224–30
  91. Henney WJ, Arthur SJ. 2019. MNRAS 486:3423–33
  92. Hennicker L, Puls J, Kee ND, Sundqvist JO. 2018. Astron. Astrophys. 616:A140
  93. Higgins ER, Vink JS. 2019. Astron. Astrophys. 622:A50
  94. Hillier DJ. 1991. Astron. Astrophys. 247:455–68
  95. Hillier DJ. 2020. Galaxies 8:60
  96. Hillier DJ, Miller DL. 1998. Ap. J. 496:407–27
  97. Hirschi R. 2015. See Vink 2015 157–98
  98. Humphreys RM, Davidson K. 1979. Ap. J. 232:409–20
  99. Humphreys RM, Davidson K. 1994. Publ. Astron. Soc. Pac. 106:1025–51
  100. Hurley JR, Puls OR, Tout CA et al. 2000. MNRAS 315:543–56
  101. Iglesias CA, Rogers FJ. 1996. Ap. J. 464:943–53
  102. Ignace R, Cassinelli JP, Bjorkman JE. 1996. Ap. J. 459:671–85
  103. Inserra C, Sullivan M, Angus CR et al. 2021. MNRAS 504:2535–49
  104. Ishii M, Ueno M, Kato M. 1999. Publ. Astron. Soc. Jpn. 51:417–24
  105. Jiang Y-F, Cantiello M, Bildsten L, Quataert E, Blaes O. 2015. Ap. J. 813:74
  106. Johnston C. 2021. Astron. Astrophys. 655:A29
  107. Justham S, Podsiadlowski P, Vink JS. 2014. Ap. J. 796:121
  108. Kalari VM, Vink JS, Dufton PL, Fraser M. 2018. Astron. Astrophys. 618:A17
  109. Kasen D, Bildsten L. 2010. Ap. J. 717:245–49
  110. Kee ND, Sundqvist JO, Decin L, de Koter A, Sana H. 2021. Astron. Astrophys. 646:A180
  111. Keszthelyi Z, Puls J, Wade GA. 2017. Astron. Astrophys. 598:A4
  112. Klein RI, Castor JI. 1978. Ap. J. 220:902–23
  113. Kobulnicky HA, Chick WT, Povich MS. 2019. Astron. J. 158:73
  114. Kobulnicky HA, Kiminki DC, Lundquist MJ et al. 2014. Ap. J. Suppl. 213:34
  115. Köhler K, Langer N, de Koter A et al. 2015. Astron. Astrophys. 573:A71
  116. Kotak R, Vink JS. 2006. Astron. Astrophys. 460:L5–8
  117. Koumpia E, Oudmaijer RD, Graham V et al. 2020. Astron. Astrophys. 635:A183
  118. Krtička J, Feldmeier A. 2021. Astron. Astrophys. 648:A79
  119. Krtička J, Kubát J. 2009. MNRAS 394:2065–79
  120. Krtička J, Kubát J. 2017. Astron. Astrophys. 606:A31
  121. Krtička J, Kubát J, Krtičková I. 2021. Astron. Astrophys. 647:A28
  122. Kudritzki RP. 2002. Ap. J. 577:389–408
  123. Kudritzki RP, Lennon DJ, Puls J 1995. Science with the VLT, Proc. ESO Astrophys. Symp., ed. JR Walsh, IJ Danziger 246–55 Heidelberg: Springer
    [Google Scholar]
  124. Kudritzki RP, Pauldrach A, Puls J. 1987. Astron. Astrophys. 173:293–98
  125. Lagae C, Driessen FA, Hennicker L, Kee ND, Sundqvist JO 2021. Astron. Astrophys. 648:A94
  126. Lamers HJGLM, Leitherer C. 1993. Ap. J. 412:771–91
  127. Lamers HJGLM, Morton DC. 1976. Ap. J. Suppl. 32:715–36
  128. Lamers HJGLM, Snow TP, Lindholm DM. 1995. Ap. J. 455:269–85
  129. Langer N. 1998. Astron. Astrophys. 329:551–58
  130. Langer N. 2012. Annu. Rev. Astron. Astrophys. 50:107–64
  131. Langer N, Norman CA, de Koter A et al. 2007. Astron. Astrophys. 475:L19–23
  132. Leitherer C. 2020. Galaxies 8:13
  133. Levesque EM, Massey P, Olsen KAG et al. 2005. Ap. J. 628:973–85
  134. Li Q-K, Cassinelli JP, Brown JC, Ignace R 2009. Res. Astron. Astrophys. 9:558–76
  135. Limongi M, Chieffi A. 2018. Ap. J. Suppl. 237:13
  136. Lobel A, Dupree AK, Stefanik RP et al. 2003. Ap. J. 583:923–54
  137. Lucy LB. 2010. Astron. Astrophys. 512:A33
  138. Lucy LB, Abbott DC. 1993. Ap. J. 405:738–46
  139. Lucy LB, Solomon PM. 1970. Ap. J. 159:879–93
  140. Macfarlane JJ, Cassinelli JP, Welsh BY et al. 1991. Ap. J. 380:564–74
  141. Maeder A, Meynet G. 2000. Annu. Rev. Astron. Astrophys. 38:143–90
  142. Mahy L, Damerdji Y, Gosset E et al. 2017. Astron. Astrophys. 607:A96
  143. Markova N, Puls J. 2008. Astron. Astrophys. 478:A823
  144. Martínez-Núñez S, Kretschmar P, Bozzo E et al. 2017. Space Sci. Rev. 212:59–150
  145. Martins F. 2015. See Vink 2015 9–42
  146. Martins F, Hillier DJ, Paumard T et al. 2008. Astron. Astrophys. 478:219–33
  147. Martins F, Schaerer D, Hillier DJ et al. 2005. Astron. Astrophys. 441:735–62
  148. Massey P, McNeill RT, Olsen KAG et al. 2007. Astron. J. 134:2474–503
  149. Mauerhan JC, Smith N, Filippenko AV et al. 2013. MNRAS 430:1801–10
  150. Meynet G, Maeder A, Schaller G, Schaerer D, Charbonnel C. 1994. Astron. Astrophys. Suppl. 103:97–105
  151. Moffat AFJ, Robert C. 1994. Ap. J. 421:310–13
  152. Mokiem MR, de Koter A, Vink JS et al. 2007. Astron. Astrophys. 473:603–14
  153. Morford JC, Fenech DM, Prinja RK et al. 2020. Astron. Astrophys. 637:A64
  154. Moriya TJ, Mazzali PA, Pian E. 2020. MNRAS 491:1384–90
  155. Morton DC. 1967. Ap. J. 150:535–42
  156. Muijres LE, de Koter A, Vink JS et al. 2011. Astron. Astrophys. 526:A32
  157. Muijres LE, Vink JS, de Koter A, Müller PE, Langer N. 2012. Astron. Astrophys. 537:A37
  158. Müller PE, Vink JS. 2008. Astron. Astrophys. 492:493–509
  159. Müller PE, Vink JS. 2014. Astron. Astrophys. 564:A57
  160. Najarro F, Hanson MM, Puls J. 2011. Astron. Astrophys. 535:A32
  161. Nieuwenhuijzen H, de Jager C. 1990. Astron. Astrophys. 231:134–36
  162. Noebauer UM, Sim SA. 2019. Living Rev. Comput. Astrophys. 5:1
  163. Nugis T, Lamers HJGLM. 2000. Astron. Astrophys. 360:227–44
  164. Nugis T, Lamers HJGLM. 2002. Astron. Astrophys. 389:162–79
  165. Ofek EO, Sullivan M, Shaviv NJ et al. 2014. Ap. J. 789:104
  166. Oskinova LM, Hamann W-R, Feldmeier A. 2007. Astron. Astrophys. 476:1331–40
  167. Owocki SP. 2015. See Vink 2015 113–56
  168. Owocki SP, Castor JI, Rybicki GB. 1988. Ap. J. 335:914–30
  169. Owocki SP, Cohen DH. 2006. Ap. J. 648:565–71
  170. Owocki SP, Cranmer SR, Gayley KG. 1996. Ap. J. Lett. 472:L115–18
  171. Owocki SP, Gayley KG, Shaviv NJ. 2004. Ap. J. 616:525–41
  172. Owocki SP, Rybicki GB. 1984. Ap. J. 284:337–50
  173. Panagia N, Felli M. 1975. Astron. Astrophys. 39:1–5
  174. Parker EN. 1958. Ap. J. 128:664–76
  175. Pastorello A, Smartt SJ, Mattila S et al. 2007. Nature 447:829–32
  176. Pauldrach AWA, Puls J. 1990. Astron. Astrophys. 237:409–24
  177. Pauldrach AWA, Puls J, Kudritzki RP. 1986. Astron. Astrophys. 164:86–100
  178. Pauldrach AWA, Vanbeveren D, Hoffmann TL. 2012. Astron. Astrophys. 538:A75
  179. Petit V, Keszthelyi Z, MacInnis R et al. 2017. MNRAS 466:1052–60
  180. Petrenz P, Puls J. 2000. Astron. Astrophys. 358:956–92
  181. Petrov B, Vink JS, Gräfener G. 2014. Astron. Astrophys. 565:A62
  182. Petrov B, Vink JS, Gräfener G. 2016. MNRAS 458:1999–2011
  183. Poniatowski LG, Sundqvist JO, Kee ND et al. 2021. Astron. Astrophys. 647:A151
  184. Prinja RK, Barlow MJ, Howarth ID. 1990. Ap. J. 361:60–20
  185. Puls J, Kudritzki RP, Herrero A et al. 1996. Astron. Astrophys. 305:171–208
  186. Puls J, Kudritzki RP, Santolaya-Rey AE et al. 1998. Boulder-Munich II: Properties of Hot, Luminous Stars I Howarth ASP Conf. Ser. 131245–57 San Francisco: ASP
  187. Puls J, Markova N, Scuderi S et al. 2006. Astron. Astrophys. 454:625–51
  188. Puls J, Najarro F, Sundqvist JO, Sen K. 2020. Astron. Astrophys. 642:A172
  189. Puls J, Springmann U, Lennon M. 2000. Astron. Astrophys. Suppl. 141:23–64
  190. Puls J, Vink JS, Najarro F. 2008. Astron. Astrophys. Rev. 16:209–325
  191. Quataert E, Shiode J. 2012. MNRAS 423:L92–96
  192. Ramachandran V, Hamann W-R, Oskinova LM et al. 2019. Astron. Astrophys. 625:A104
  193. Ramírez-Agudelo OH, Sana H, de Koter A et al. 2017. Astron. Astrophys. 600:A81
  194. Renzo M, Ott CD, Shore SN, de Mink SE 2017. Astron. Astrophys. 603:A118
  195. Richardson ND, Mehner A. 2018. Res. Notes Am. Astron. Soc. 2:3121
  196. Ro S, Matzner CD. 2016. Ap. J. 821:109
  197. Robert C, Moffat AFJ, Bastien P, Drissen L, St-Louis N. 1989. Ap. J. 347:1034–54
  198. Rodrigues CV, Magalhães AM. 2000. Ap. J. 540:412–21
  199. Rubio-Díez MM, Sundqvist JO, Najarro F et al. 2022. Astron. Astrophys. 658:A61
  200. Sabhahit GN, Vink JS, Higgins ER, Sander AAC. 2021. MNRAS 506:4473–87
  201. Sana H, de Koter A, de Mink SE et al. 2013. Astron. Astrophys. 550:A107
  202. Sana H, Le Bouquin J-B, Lacour S et al. 2014. Ap. J. Suppl. 215:15
  203. Sander AAC, Hamann W-R, Todt H, Hainich R, Shenar T. 2017. Astron. Astrophys. 603:A86
  204. Sander AAC, Hamann W-R, Todt H et al. 2019. Astron. Astrophys. 621:A92
  205. Sander AAC, Vink JS. 2020. MNRAS 499:873–92
  206. Sander AAC, Vink JS, Hamann W-R. 2020. MNRAS 491:4406–25
  207. Sanyal D, Grassitelli L, Langer N, Bestenlehner JM. 2015. Astron. Astrophys. 580:A20
  208. Schmutz W, Abbott DC, Russell RS, Hamann W-R, Wessolowski U. 1990. Ap. J. 355:255–70
  209. Schneider FRN, Ramírez-Agudelo OH, Tramper F et al. 2018. Astron. Astrophys. 618:A73
  210. Shaviv NJ. 2000. Ap. J. Lett. 532:L137–40
  211. Shenar T, Gilkis A, Vink JS, Sana H, Sander AAC 2020. Astron. Astrophys. 634:A79
  212. Shenar T, Hainich R, Todt H et al. 2016. Astron. Astrophys. 591:A22
  213. Simón-Díaz S. 2020. Reviews in Frontiers of Modern Astrophysics: From Space Debris to Cosmology P Kabáth, D Jones, M Skarka , pp. 155–87 Cham, Switz: Springer
  214. Smartt SJ. 2009. Annu. Rev. Astron. Astrophys. 47:63–106
  215. Smith N. 2014. Annu. Rev. Astron. Astrophys. 52:487–528
  216. Smith N, Gehrz RD, Hinz PM et al. 2003. Astron. J. 125:1458–66
  217. Smith N, Li W, Foley RJ et al. 2007. Ap. J. 666:1116–28
  218. Spera M, Mapelli M, Giacobbo N et al. 2019. MNRAS 485:889–907
  219. Sun NC, Maund JR, Crowther PA. 2020. MNRAS 497:5118–35
  220. Sundqvist JO, Owocki SP, Puls J. 2018. Astron. Astrophys. 611:A17
  221. Sundqvist JO, Puls J. 2018. Astron. Astrophys. 619:A59
  222. Sundqvist JO, Puls J, Owocki SP. 2014. Astron. Astrophys. 568:A59
  223. Šurlan B, Hamann W-R, Aret A et al. 2013. Astron. Astrophys. 559:A130
  224. Tanikawa A, Kinugawa T, Yoshida T, Hijikawa K, Umeda H. 2021. MNRAS 505:2170–76
  225. Tramper F, Sana H, de Koter A, Kaper L, Ramírez-Agudelo OH. 2014. Astron. Astrophys. 572:A36
  226. Tramper F, Straal SM, Sanyal D et al. 2015. Astron. Astrophys. 581:A110
  227. Trundle C, Kotak R, Vink JS, Meikle WPS. 2008. Astron. Astrophys. 483:L47–50
  228. ud-Doula A, Owocki SP. 2002. Ap. J. 576:413–28
  229. van Marle AJ, Owocki SP, Shaviv NJ. 2009. MNRAS 394:595–604
  230. Vink JS. 2000. Radiation-driven wind models of massive stars PhD Thesis. University of Utrecht The Netherlands:
  231. Vink JS 2015. Very Massive Stars in the Local Universe Vol. 412 Ap. Space Sci. Libr. Cham, Switz: Springer
  232. Vink JS. 2017. Astron. Astrophys. 607:L8
  233. Vink JS. 2018. Astron. Astrophys. 615:A119
  234. Vink JS, Brott I, Gräfener G et al. 2010. Astron. Astrophys. 512:L7
  235. Vink JS, de Koter A. 2002. Astron. Astrophys. 393:543–53
  236. Vink JS, de Koter A. 2005. Astron. Astrophys. 442:587–96
  237. Vink JS, de Koter A, Lamers HJGLM. 1999. Astron. Astrophys. 345:109–16
  238. Vink JS, de Koter A, Lamers HJGLM. 2000. Astron. Astrophys. 362:295–309
  239. Vink JS, de Koter A, Lamers HJGLM. 2001. Astron. Astrophys. 369:574–88
  240. Vink JS, Gräfener G. 2012. Ap. J. Lett. 751:L34
  241. Vink JS, Higgins ER, Sander AAC, Sabhahit GN. 2021. MNRAS 504:146–54
  242. Vink JS, Muijres LE, Anthonisse B et al. 2011. Astron. Astrophys. 531:A132
  243. Vink JS, Sander AAC. 2021. MNRAS 504:2051–61
  244. Wright AE, Barlow MJ. 1975. MNRAS 170:41–51
  245. Woosley SE. 1993. Ap. J. 405:273–77
  246. Woosley SE, Heger A. 2015. See Vink 2015 199–226
  247. Wu S, Fuller J. 2021. Ap. J. 906:3
  248. Yoon S-C, Cantiello M 2010. Ap. J. Lett. 717:L62–65
  249. Yoshida T, Umeda H, Maeda K, Ishii T. 2016. MNRAS 457:351–61
  250. Yusof N, Hirschi R, Meynet G et al. 2013. MNRAS 433:1114–32
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