The physical origin of the mass–size relation and its scatter for disk galaxies (2024)

Open Access

Issue

A&A

Volume 686, June 2024

Article NumberA168
Number of page(s)10
SectionExtragalactic astronomy
DOIhttps://doi.org/10.1051/0004-6361/202348989
Published online07 June 2024
  1. Avila-Reese, V., Zavala, J., Firmani, C., & Hernández-Toledo, H. M. 2008, AJ, 136, 1340 [GoogleScholar]
  2. Berrier, J. C., & Sellwood, J. A. 2015, ApJ, 799, 213 [GoogleScholar]
  3. Blanton, M. R., Hogg, D. W., Bahcall, N. A., et al. 2003, ApJ, 594, 186 [GoogleScholar]
  4. Bradford, J. D., Geha, M. C., & van den Bosch, F. C. 2016, ApJ, 832, 11 [GoogleScholar]
  5. Covington, M., Dekel, A., Cox, T. J., Jonsson, P., & Primack, J. R. 2008, MNRAS, 384, 94 [GoogleScholar]
  6. Covington, M. D., Primack, J. R., Porter, L. A., et al. 2011, MNRAS, 415, 3135 [GoogleScholar]
  7. Dalcanton, J. J., Spergel, D. N., & Summers, F. J. 1997, ApJ, 482, 659 [GoogleScholar]
  8. Davé, R., Anglés-Alcázar, D., Narayanan, D., et al. 2019, MNRAS, 486, 2827 [GoogleScholar]
  9. Davis, M., Efstathiou, G., Frenk, C. S., & White, S. D. M. 1985, ApJ, 292, 371 [GoogleScholar]
  10. Debattista, V. P., Mayer, L., Carollo, C. M., et al. 2006, ApJ, 645, 209 [GoogleScholar]
  11. Desmond, H., Mao, Y.-Y., Wechsler, R. H., Crain, R. A., & Schaye, J. 2017, MNRAS, 471, L11 [GoogleScholar]
  12. Doménech-Moral, M., Martínez-Serrano, F. J., Domínguez-Tenreiro, R., & Serna, A. 2012, MNRAS, 421, 2510 [GoogleScholar]
  13. Doroshkevich, A. G. 1970, Astrofizika, 6, 581 [GoogleScholar]
  14. Du, M., Ho, L. C., Zhao, D., et al. 2019, ApJ, 884, 129 [GoogleScholar]
  15. Du, M., Ho, L. C., Debattista, V. P., et al. 2020, ApJ, 895, 139 [GoogleScholar]
  16. Du, M., Ho, L. C., Debattista, V. P., et al. 2021, ApJ, 919, 135 [GoogleScholar]
  17. Du, M., Ho, L. C., Yu, H.-R., & Debattista, V. P. 2022, ApJ, 937, L18 [GoogleScholar]
  18. Dubois, Y., Beckmann, R., Bournaud, F., et al. 2021, A&A, 651, A109 [GoogleScholar]
  19. Dutton, A. A., van den Bosch, F. C., Dekel, A., & Courteau, S. 2007, ApJ, 654, 27 [GoogleScholar]
  20. Fall, S. M. 1983, in Internal Kinematics and Dynamics of Galaxies, ed. E. Athanassoula, IAU Symp., 100, 391 [GoogleScholar]
  21. Fall, S. M., & Efstathiou, G. 1980, MNRAS, 193, 189 [GoogleScholar]
  22. Fall, S. M., & Rodriguez-Gomez, V. 2023, ApJ, 949, L14 [GoogleScholar]
  23. Fernández Lorenzo, M., Sulentic, J., Verdes-Montenegro, L., & Argudo-Fernández, M. 2013, MNRAS, 434, 325 [GoogleScholar]
  24. Fisher, D. B., & Drory, N. 2008, AJ, 136, 773 [GoogleScholar]
  25. Genel, S., Nelson, D., Pillepich, A., et al. 2018, MNRAS, 474, 3976 [GoogleScholar]
  26. Grand, R. J. J., Gómez, F. A., Marinacci, F., et al. 2017, MNRAS, 467, 179 [NASA ADS] [GoogleScholar]
  27. Gurovich, S., Freeman, K., Jerjen, H., Staveley-Smith, L., & Puerari, I. 2010, AJ, 140, 663 [GoogleScholar]
  28. Herpich, J., Stinson, G. S., Dutton, A. A., et al. 2015, MNRAS, 448, L99 [GoogleScholar]
  29. Hopkins, P. F., Lauer, T. R., Cox, T. J., Hernquist, L., & Kormendy, J. 2009, ApJS, 181, 486 [GoogleScholar]
  30. Hoyle, F. 1951, Proceedings of a Symposium on the Motion of Gaseous Masses of Cosmical Dimensions held at Paris, 195 [GoogleScholar]
  31. Huertas-Company, M., Rodriguez-Gomez, V., Nelson, D., et al. 2019, MNRAS, 489, 1859 [GoogleScholar]
  32. Jiang, F., Dekel, A., Kneller, O., et al. 2019, MNRAS, 488, 4801 [GoogleScholar]
  33. Karmakar, T., Genel, S., & Somerville, R. S. 2023, MNRAS, 520, 1630 [GoogleScholar]
  34. Kroupa, P., Aarseth, S., & Hurley, J. 2001, MNRAS, 321, 699 [NASA ADS] [CrossRef] [GoogleScholar]
  35. Lagos, C. D. P., Theuns, T., Stevens, A. R. H., et al. 2017, MNRAS, 464, 3850 [GoogleScholar]
  36. Lange, R., Driver, S. P., Robotham, A. S. G., et al. 2015, MNRAS, 447, 2603 [GoogleScholar]
  37. Lelli, F., McGaugh, S. S., & Schombert, J. M. 2016, ApJ, 816, L14 [GoogleScholar]
  38. Lelli, F., McGaugh, S. S., Schombert, J. M., Desmond, H., & Katz, H. 2019, MNRAS, 484, 3267 [GoogleScholar]
  39. Liao, S., Gao, L., Frenk, C. S., et al. 2019, MNRAS, 490, 5182 [GoogleScholar]
  40. Mancera Piña, P. E., Posti, L., Fraternali, F., Adams, E. A. K., & Oosterloo, T. 2021, A&A, 647, A76 [GoogleScholar]
  41. Marinacci, F., Vogelsberger, M., Pakmor, R., et al. 2018, MNRAS, 480, 5113 [NASA ADS] [GoogleScholar]
  42. Mendel, J. T., Simard, L., Palmer, M., Ellison, S. L., & Patton, D. R. 2014, ApJS, 210, 3 [GoogleScholar]
  43. Minchev, I., Famaey, B., Quillen, A. C., et al. 2012, A&A, 548, A127 [GoogleScholar]
  44. Mo, H. J., Mao, S., & White, S. D. M. 1998, MNRAS, 295, 319 [GoogleScholar]
  45. Muñoz-Mateos, J. C., Sheth, K., Regan, M., et al. 2015, ApJS, 219, 3 [GoogleScholar]
  46. Naab, T., & Ostriker, J. P. 2017, ARA&A, 55, 59 [GoogleScholar]
  47. Naab, T., Johansson, P. H., & Ostriker, J. P. 2009, ApJ, 699, L178 [GoogleScholar]
  48. Naiman, J. P., Pillepich, A., Springel, V., et al. 2018, MNRAS, 477, 1206 [GoogleScholar]
  49. Nelson, D., Pillepich, A., Springel, V., et al. 2018, MNRAS, 475, 624 [GoogleScholar]
  50. Nelson, D., Springel, V., Pillepich, A., et al. 2019, Comput. Astrophys. Cosmol., 6, 2 [GoogleScholar]
  51. Noordermeer, E., & Verheijen, M. A. W. 2007, MNRAS, 381, 1463 [GoogleScholar]
  52. Obreja, A., Macciò, A. V., Moster, B., et al. 2018, MNRAS, 477, 4915 [GoogleScholar]
  53. Obreschkow, D., & Glazebrook, K. 2014, ApJ, 784, 26 [GoogleScholar]
  54. Oser, L., Naab, T., Ostriker, J. P., & Johansson, P. H. 2012, ApJ, 744, 63 [GoogleScholar]
  55. Pakmor, R., Bauer, A., & Springel, V. 2011, MNRAS, 418, 1392 [GoogleScholar]
  56. Pakmor, R., Springel, V., Bauer, A., et al. 2016, MNRAS, 455, 1134 [GoogleScholar]
  57. Papastergis, E., Adams, E. A. K., & van der Hulst, J. M. 2016, A&A, 593, A39 [GoogleScholar]
  58. Peebles, P. J. E. 1969, ApJ, 155, 393 [GoogleScholar]
  59. Pillepich, A., Springel, V., Nelson, D., et al. 2018, MNRAS, 473, 4077 [GoogleScholar]
  60. Pillepich, A., Nelson, D., Springel, V., et al. 2019, MNRAS, 490, 3196 [GoogleScholar]
  61. Porter, L. A., Somerville, R. S., Primack, J. R., et al. 2014, MNRAS, 445, 3092 [GoogleScholar]
  62. Proctor, K. L., Lagos, C. D. P., Ludlow, A. D., & Robotham, A. S. G. 2024, MNRAS, 527, 2624 [GoogleScholar]
  63. Rodriguez-Gomez, V., Genel, S., Vogelsberger, M., et al. 2015, MNRAS, 449, 49 [GoogleScholar]
  64. Rodriguez-Gomez, V., Snyder, G. F., Lotz, J. M., et al. 2019, MNRAS, 483, 4140 [GoogleScholar]
  65. Rodriguez-Gomez, V., Genel, S., Fall, S. M., et al. 2022, MNRAS, 512, 5978 [GoogleScholar]
  66. Romanowsky, A. J., & Fall, S. M. 2012, ApJS, 203, 17 [GoogleScholar]
  67. Roškar, R., Debattista, V. P., Quinn, T. R., Stinson, G. S., & Wadsley, J. 2008, ApJ, 684, L79 [GoogleScholar]
  68. Roškar, R., Debattista, V. P., Quinn, T. R., & Wadsley, J. 2012, MNRAS, 426, 2089 [GoogleScholar]
  69. Schaye, J., Crain, R. A., Bower, R. G., et al. 2015, MNRAS, 446, 521 [GoogleScholar]
  70. Sellwood, J. A. 2014, Rev. Mod. Phys., 86, 1 [GoogleScholar]
  71. Shankar, F., Marulli, F., Bernardi, M., et al. 2013, MNRAS, 428, 109 [GoogleScholar]
  72. Shen, S., Mo, H. J., White, S. D. M., et al. 2003, MNRAS, 343, 978 [GoogleScholar]
  73. Simard, L., Mendel, J. T., Patton, D. R., Ellison, S. L., & McConnachie, A. W. 2011, ApJS, 196, 11 [GoogleScholar]
  74. Somerville, R. S., & Davé, R. 2015, ARA&A, 53, 51 [GoogleScholar]
  75. Somerville, R. S., Barden, M., Rix, H.-W., et al. 2008, ApJ, 672, 776 [GoogleScholar]
  76. Springel, V. 2010, MNRAS, 401, 791 [GoogleScholar]
  77. Springel, V., White, S. D. M., Tormen, G., & Kauffmann, G. 2001, MNRAS, 328, 726 [GoogleScholar]
  78. Springel, V., Pakmor, R., Pillepich, A., et al. 2018, MNRAS, 475, 676 [GoogleScholar]
  79. Sweet, S. M., Fisher, D., Glazebrook, K., et al. 2018, ApJ, 860, 37 [GoogleScholar]
  80. Teklu, A. F., Remus, R.-S., Dolag, K., et al. 2015, ApJ, 812, 29 [GoogleScholar]
  81. Weinberger, R., Springel, V., Hernquist, L., et al. 2017, MNRAS, 465, 3291 [GoogleScholar]
  82. White, S. D. M. 1984, ApJ, 286, 38 [GoogleScholar]
  83. White, S. D. M., & Rees, M. J. 1978, MNRAS, 183, 341 [GoogleScholar]
  84. Yang, H., Gao, L., Frenk, C. S., et al. 2023, MNRAS, 518, 5253 [GoogleScholar]
  85. Zana, T., Lupi, A., Bonetti, M., et al. 2022, MNRAS, 515, 1524 [GoogleScholar]
  86. Zanisi, L., Shankar, F., Lapi, A., et al. 2020, MNRAS, 492, 1671 [GoogleScholar]
  87. Zaritsky, D., Courtois, H., Muñoz-Mateos, J.-C., et al. 2014, AJ, 147, 134 [GoogleScholar]
  88. Zavala, J., Frenk, C. S., Bower, R., et al. 2016, MNRAS, 460, 4466 [GoogleScholar]
  89. Zjupa, J., & Springel, V. 2017, MNRAS, 466, 1625 [GoogleScholar]

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The physical origin of the mass–size relation and its scatter for disk galaxies (2024)

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