Open Access
Issue
A&A
Volume 694, February 2025
Article Number A268
Number of page(s) 19
Section Planets, planetary systems, and small bodies
DOI https://doi.org/10.1051/0004-6361/202452517
Published online 19 February 2025
  1. Acuña, L., Deleuil, M., Mousis, O., et al. 2021, A&A, 647, A53 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  2. Acuña, L., Kreidberg, L., Zhai, M., & Mollière, P. 2024, A&A, 688, A60 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  3. Albrecht, S., Winn, J. N., Johnson, J. A., et al. 2012, ApJ, 757, 18 [NASA ADS] [CrossRef] [Google Scholar]
  4. Andretta, V., Busà, I., Gomez, M. T., & Terranegra, L. 2005, A&A, 430, 669 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  5. Bakos, G., Noyes, R. W., Latham, D. W., et al. 2006, in Tenth Anniversary of 51 Peg-b: Status of and Prospects for Hot Jupiter Studies, eds. L. Arnold, F. Bouchy, & C. Moutou, 184 [Google Scholar]
  6. Barclay, T., Pepper, J., & Quintana, E. V. 2018, ApJS, 239, 2 [Google Scholar]
  7. Bitsch, B., & Mah, J. 2023, A&A, 679, A11 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  8. Boisse, I., Moutou, C., Vidal-Madjar, A., et al. 2009, A&A, 495, 959 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  9. Borucki, W. J. 2017, Proc. Am. Philos. Soc., 161, 38 [Google Scholar]
  10. Brahm, R., Jordán, A., Hartman, J., & Bakos, G. 2017, MNRAS, 467, 971 [NASA ADS] [Google Scholar]
  11. Brahm, R., Jordán, A., & Espinoza, N. 2017, PASP, 129, 034002 [Google Scholar]
  12. Brahm, R., Espinoza, N., Jordán, A., et al. 2019, AJ, 158, 45 [Google Scholar]
  13. Brahm, R., Nielsen, L. D., Wittenmyer, R. A., et al. 2020, AJ, 160, 235 [Google Scholar]
  14. Brahm, R., Ulmer-Moll, S., Hobson, M. J., et al. 2023, AJ, 165, 227 [NASA ADS] [CrossRef] [Google Scholar]
  15. Bressan, A., Marigo, P., Girardi, L., et al. 2012, MNRAS, 427, 127 [NASA ADS] [CrossRef] [Google Scholar]
  16. Brown, T. M., Baliber, N., Bianco, F. B., et al. 2013, PASP, 125, 1031 [Google Scholar]
  17. Burnham, K., & Anderson, D. 2003, Model Selection and Multimodel Inference: A Practical Information-Theoretic Approach (Springer New York) [Google Scholar]
  18. Butler, R. P., Marcy, G. W., Williams, E., et al. 1996, PASP, 108, 500 [Google Scholar]
  19. Caldwell, D. A., Tenenbaum, P., Twicken, J. D., et al. 2020, RNAAS, 4, 201 [NASA ADS] [Google Scholar]
  20. Cameron, A. G. W. 1978, Moon Planets, 18, 5 [Google Scholar]
  21. Castelli, F., & Kurucz, R. L. 2003, in Modelling of Stellar Atmospheres, 210, eds. N. Piskunov, W. W. Weiss, & D. F. Gray, A20 [NASA ADS] [Google Scholar]
  22. Chabrier, G., & Debras, F. 2021, ApJ, 917, 4 [NASA ADS] [CrossRef] [Google Scholar]
  23. Chatterjee, S., Ford, E. B., Matsumura, S., & Rasio, F. A. 2008, ApJ, 686, 580 [NASA ADS] [CrossRef] [Google Scholar]
  24. Collins, K. A., Kielkopf, J. F., Stassun, K. G., & Hessman, F. V. 2017, AJ, 153, 77 [Google Scholar]
  25. Crane, J. D., Shectman, S. A., & Butler, R. P. 2006, in Ground-based and Airborne Instrumentation for Astronomy, 6269, eds. I. S. McLean & M. Iye, International Society for Optics and Photonics (SPIE), 626931 [NASA ADS] [CrossRef] [Google Scholar]
  26. Crane, J. D., Shectman, S. A., Butler, R. P., Thompson, I. B., & Burley, G. S. 2008, in Ground-based and Airborne Instrumentation for Astronomy II, 7014, eds. I. S. McLean, & M. M. Casali, International Society for Optics and Photonics (SPIE), 701479 [Google Scholar]
  27. Crane, J. D., Shectman, S. A., Butler, R. P., et al. 2010, in Ground-based and Airborne Instrumentation for Astronomy III, 7735, eds. I. S. McLean, S. K. Ramsay, & H. Takami, International Society for Optics and Photonics (SPIE), 773553 [NASA ADS] [Google Scholar]
  28. Dawson, R. I., & Johnson, J. A. 2018, ARA&A, 56, 175 [Google Scholar]
  29. Dong, J., Huang, C. X., Dawson, R. I., et al. 2021, ApJS, 255, 6 [NASA ADS] [CrossRef] [Google Scholar]
  30. Dorn, C., Khan, A., Heng, K., et al. 2015, A&A, 577, A83 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  31. Duncan, D. K., Vaughan, A. H., Wilson, O. C., et al. 1991, ApJS, 76, 383 [Google Scholar]
  32. Espinoza, N., Hartman, J. D., Bakos, G. A., et al. 2019, AJ, 158, 63 [NASA ADS] [CrossRef] [Google Scholar]
  33. Espinoza, N., Kossakowski, D., & Brahm, R. 2019, MNRAS, 490, 2262 [Google Scholar]
  34. Foreman-Mackey, D., Hogg, D. W., Lang, D., & Goodman, J. 2013, PASP, 125, 306 [Google Scholar]
  35. Fortney, J. J., Marley, M. S., & Barnes, J. W. 2007, ApJ, 659, 1661 [Google Scholar]
  36. Fressin, F., Torres, G., Charbonneau, D., et al. 2013, ApJ, 766, 81 [NASA ADS] [CrossRef] [Google Scholar]
  37. Fulton, B. J., Petigura, E. A., Blunt, S., & Sinukoff, E. 2018, PASP, 130, 044504 [Google Scholar]
  38. Gaia Collaboration (Prusti, T., et al.) 2016, A&A, 595, A1 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  39. Gaia Collaboration (Brown, A. G. A., et al.) 2018, A&A, 616, A1 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  40. Gaia Collaboration (Vallenari, A., et al.) 2023, A&A, 674, A1 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  41. Gill, S., Wheatley, P. J., Cooke, B. F., et al. 2020, ApJ, 898, L11 [Google Scholar]
  42. Gomes da Silva, J., Santos, N. C., Bonfils, X., et al. 2011, A&A, 534, A30 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  43. Grimm, S. L., Demory, B.-O., Gillon, M., et al. 2018, A&A, 613, A68 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  44. Guerrero, N. M., Seager, S., Huang, C. X., et al. 2021, ApJS, 254, 39 [NASA ADS] [CrossRef] [Google Scholar]
  45. Haldemann, J., Alibert, Y., Mordasini, C., & Benz, W. 2020, A&A, 643, A105 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  46. Hartman, J. D., Bakos, G. Á., Bayliss, D., et al. 2019, AJ, 157, 55 [Google Scholar]
  47. Hatzes, A. P., & Rauer, H. 2015, ApJ, 810, L25 [Google Scholar]
  48. Helled, R., & Morbidelli, A. 2021, in ExoFrontiers; Big Questions in Exoplanetary Science, ed. N. Madhusudhan (IOP), 12 [Google Scholar]
  49. Hobson, M. J., Brahm, R., Jordán, A., et al. 2021, AJ, 161, 235 [NASA ADS] [CrossRef] [Google Scholar]
  50. Hobson, M. J., Trifonov, T., Henning, T., et al. 2023, AJ, 166, 201 [NASA ADS] [CrossRef] [Google Scholar]
  51. Howard, S., & Guillot, T. 2023, A&A, 672, L1 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  52. Howell, S. B., Sobeck, C., Haas, M., et al. 2014, PASP, 126, 398 [Google Scholar]
  53. Huang, C., Wu, Y., & Triaud, A. H. M. J. 2016, ApJ, 825, 98 [NASA ADS] [CrossRef] [Google Scholar]
  54. Huang, C. X., Vanderburg, A., Pál, A., et al. 2020a, RNAAS, 4, 204 [Google Scholar]
  55. Huang, C. X., Vanderburg, A., Pál, A., et al. 2020b, RNAAS, 4, 206 [NASA ADS] [Google Scholar]
  56. Hubbard, W. B., & Marley, M. S. 1989, Icarus, 78, 102 [Google Scholar]
  57. Jeffreys, H. 1939, Theory of Probability (Oxford University Press) [Google Scholar]
  58. Jenkins, J. M., Twicken, J. D., McCauliff, S., et al. 2016, SPIE Conf. Ser., 9913, 99133E [Google Scholar]
  59. Jones, M. I., Brahm, R., Espinoza, N., et al. 2019, A&A, 625, A16 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  60. Jones, M. I., Reinarz, Y., Brahm, R., et al. 2024, A&A, 683, A192 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  61. Jordán, A., Brahm, R., Espinoza, N., et al. 2019, AJ, 157, 100 [Google Scholar]
  62. Jordán, A., Brahm, R., Espinoza, N., et al. 2020, AJ, 159, 145 [Google Scholar]
  63. Kass, R. E., & Raftery, A. E. 1995, J. Am. Statist. Assoc., 90, 773 [CrossRef] [Google Scholar]
  64. Kaufer, A., Stahl, O., Tubbesing, S., et al. 1999, The Messenger, 95, 8 [Google Scholar]
  65. Kempton, E.M. R., Bean, J. L., Louie, D. R., et al. 2018, PASP, 130, 114401 [CrossRef] [Google Scholar]
  66. Kossakowski, D., Espinoza, N., Brahm, R., et al. 2019, MNRAS, 490, 1094 [NASA ADS] [CrossRef] [Google Scholar]
  67. Kovács, G., Zucker, S., & Mazeh, T. 2002, A&A, 391, 369 [Google Scholar]
  68. Kozai, Y. 1962, AJ, 67, 591 [Google Scholar]
  69. Kreidberg, L. 2015, batman: BAsic Transit Model cAlculatioN in Python, Astrophysics Source Code Library [record ascl:1510.002] [Google Scholar]
  70. Kunimoto, M., & Daylan, T. 2021, TESS Science conference 2, 62 [NASA ADS] [Google Scholar]
  71. Kunimoto, M., Huang, C., Tey, E., et al. 2021, RNAAS, 5, 234 [NASA ADS] [Google Scholar]
  72. Kunimoto, M., Tey, E., Fong, W., et al. 2022, RNAAS, 6, 236 [NASA ADS] [Google Scholar]
  73. Lidov, M. L. 1962, Planet. Space Sci., 9, 719 [Google Scholar]
  74. Lopez, E. D., & Fortney, J. J. 2014, ApJ, 792, 1 [Google Scholar]
  75. Lyon, S. P. 1992, Los Alamos National Laboratory report LA-UR-92-3407 [Google Scholar]
  76. Madhusudhan, N., Amin, M. A., & Kennedy, G. M. 2014, ApJ, 794, L12 [Google Scholar]
  77. Mandushev, G., Torres, G., Latham, D. W., et al. 2005, ApJ, 621, 1061 [NASA ADS] [CrossRef] [Google Scholar]
  78. Mayor, M., Marmier, M., Lovis, C., et al. 2011, arXiv e-prints [arXiv:1109.2497] [Google Scholar]
  79. Mayor, M., Pepe, F., Queloz, D., et al. 2003, The Messenger, 114, 20 [NASA ADS] [Google Scholar]
  80. Mazevet, S., Licari, A., Chabrier, G., & Potekhin, A. Y. 2019, A&A, 621, A128 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  81. McCully, C., Volgenau, N. H., Harbeck, D.-R., et al. 2018, in Software and Cyberinfrastructure for Astronomy V, 10707, eds. J. C. Guzman, & J. Ibsen, International Society for Optics and Photonics (SPIE), 107070K [NASA ADS] [Google Scholar]
  82. Méndez, A., & Rivera-Valentín, E. G. 2017, ApJ, 837, L1 [Google Scholar]
  83. Miguel, Y., & Vazan, A. 2023, Remote Sensing, 15, 681 [NASA ADS] [CrossRef] [Google Scholar]
  84. Miguel, Y., Bazot, M., Guillot, T., et al. 2022, A&A, 662, A18 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  85. Mollière, P., van Boekel, R., Dullemond, C., Henning, T., & Mordasini, C. 2015, ApJ, 813, 47 [Google Scholar]
  86. Mollière, P., van Boekel, R., Bouwman, J., et al. 2017, A&A, 600, A10 [Google Scholar]
  87. Mollière, P., Molyarova, T., Bitsch, B., et al. 2022, ApJ, 934, 74 [CrossRef] [Google Scholar]
  88. Mousis, O., Deleuil, M., Aguichine, A., et al. 2020, ApJ, 896, L22 [NASA ADS] [CrossRef] [Google Scholar]
  89. Munari, U., Henden, A., Frigo, A., et al. 2014, AJ, 148, 81 [NASA ADS] [CrossRef] [Google Scholar]
  90. Noyes, R. W., Weiss, N. O., & Vaughan, A. H. 1984, ApJ, 287, 769 [Google Scholar]
  91. Paxton, B., Bildsten, L., Dotter, A., et al. 2011, ApJS, 192, 3 [Google Scholar]
  92. Petrovich, C., & Tremaine, S. 2016, ApJ, 829, 132 [NASA ADS] [CrossRef] [Google Scholar]
  93. Pollack, J. B., Hubickyj, O., Bodenheimer, P., et al. 1996, Icarus, 124, 62 [NASA ADS] [CrossRef] [Google Scholar]
  94. Queloz, D., Henry, G. W., Sivan, J. P., et al. 2001, A&A, 379, 279 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  95. Rafikov, R. R. 2005, ApJ, 621, L69 [Google Scholar]
  96. Rasio, F. A., & Ford, E. B. 1996, Science, 274, 954 [Google Scholar]
  97. Ricker, G. R., Winn, J. N., Vanderspek, R., et al. 2015, J. Astron. Telesc. Instrum. Syst., 1, 014003 [Google Scholar]
  98. Santerne, A., Moutou, C., Tsantaki, M., et al. 2016, A&A, 587, A64 [NASA ADS] [CrossRef] [EDP Sciences] [Google Scholar]
  99. Schlecker, M., Kossakowski, D., Brahm, R., et al. 2020, AJ, 160, 275 [Google Scholar]
  100. Schlichting, H. E. 2014, ApJ, 795, L15 [Google Scholar]
  101. Shatsky, N., Belinski, A., Dodin, A., et al. 2020, in Ground-Based Astronomy in Russia. 21st Century, eds. I. I. Romanyuk, I. A. Yakunin, A. F. Valeev, & D. O. Kudryavtsev, 127 [CrossRef] [Google Scholar]
  102. Skrutskie, M. F., Cutri, R. M., Stiening, R., et al. 2006, AJ, 131, 1163 [NASA ADS] [CrossRef] [Google Scholar]
  103. Smith, J. C., Stumpe, M. C., Cleve, J. E. V., et al. 2012, PASP, 124, 1000 [NASA ADS] [CrossRef] [Google Scholar]
  104. Speagle, J. S. 2020, MNRAS, 493, 3132 [Google Scholar]
  105. Stevenson, D. 1982, Planet. Space Sci., 30, 755 [NASA ADS] [CrossRef] [Google Scholar]
  106. Stumpe, M. C., Smith, J. C., Cleve, J. E. V., et al. 2012, PASP, 124, 985 [NASA ADS] [CrossRef] [Google Scholar]
  107. Stumpe, M. C., Smith, J. C., Catanzarite, J. H., et al. 2014, PASP, 126, 100 [Google Scholar]
  108. Tayar, J., Claytor, Z. R., Huber, D., & van Saders, J. 2022, ApJ, 927, 31 [NASA ADS] [CrossRef] [Google Scholar]
  109. Thorngren, D. P., Fortney, J. J., Murray-Clay, R. A., & Lopez, E. D. 2016, ApJ, 831, 64 [NASA ADS] [CrossRef] [Google Scholar]
  110. Tokovinin, A. 2018, PASP, 130, 035002 [Google Scholar]
  111. Trifonov, T., Brahm, R., Espinoza, N., et al. 2021, AJ, 162, 283 [NASA ADS] [CrossRef] [Google Scholar]
  112. Trifonov, T., Brahm, R., Jordán, A., et al. 2023, AJ, 165, 179 [NASA ADS] [CrossRef] [Google Scholar]
  113. Twicken, J. D., Catanzarite, J. H., Clarke, B. D., et al. 2018, PASP, 130, 064502 [Google Scholar]
  114. Udalski, A., Szewczyk, O., Zebrun, K., et al. 2002, Acta Astron., 52, 317 [Google Scholar]
  115. Walsh, K. J., Morbidelli, A., Raymond, S. N., O’Brien, D. P., & Mandell, A. M. 2011, Nature, 475, 206 [Google Scholar]
  116. Winn, J. N., & Fabrycky, D. C. 2015, ARA&A, 53, 409 [Google Scholar]
  117. Wu, Y., & Lithwick, Y. 2011, ApJ, 735, 109 [Google Scholar]
  118. Zapolsky, H. S., & Salpeter, E. E. 1969, ApJ, 158, 809 [Google Scholar]
  119. Zechmeister, M., & Kürster, M. 2018, GLS: Generalized Lomb-Scargle periodogram, Astrophysics Source Code Library [record ascl:1807.019] [Google Scholar]
  120. Ziegler, C., Tokovinin, A., Briceño, C., et al. 2020, AJ, 159, 19 [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.