stringtranslate.com

List of exoplanets discovered in 2019

This list of exoplanets discovered in 2019 is a list of confirmed exoplanets that were first observed during 2019.[1][2]

For exoplanets detected only by radial velocity, the listed value for mass is a lower limit. See Minimum mass for more information.

Specific exoplanet lists

Lists of exoplanets

Lists of exoplanets by year of discovery


References

  1. ^ "NASA Exoplanet Archive". exoplanetarchive.ipac.caltech.edu. California Institute of Technology. Retrieved 27 March 2018.
  2. ^ "Extrasolar Planet's Catalogue (sic)". Kyoto University. Retrieved 20 December 2019.
  3. ^ "The Extrasolar Planets Encyclopaedia". 1995. Retrieved 20 January 2018.
  4. ^ Luque, R.; Trifonov, T.; Reffert, S.; Quirrenbach, A.; Lee, M. H.; Albrecht, S.; Andersen, M. Fredslund; Antoci, V.; Grundahl, F.; Schwab, C.; Wolthoff, V. (13 October 2019). "Precise radial velocities of giant stars XIII. A second Jupiter orbiting in 4:3 resonance in the 7 CMa system". Astronomy & Astrophysics. A136: 631. arXiv:1910.05853. Bibcode:2019A&A...631A.136L. doi:10.1051/0004-6361/201936464. S2CID 204512658.
  5. ^ "A second planet in the Beta Pictoris system". Nanowerk. 19 August 2019. Retrieved 20 August 2019.
  6. ^ Benatti, S.; Nardiello, D.; Malavolta, L.; Desidera, S.; Borsato, L.; Nascimbeni, V.; Damasso, M.; D'Orazi, V.; Mesa, D.; Messina, S.; Esposito, M.; Bignamini, A.; Claudi, R.; Covino, E.; Lovis, C.; Sabotta, S. (October 2019). "A possibly inflated planet around the bright young star DS Tucanae A". Astronomy & Astrophysics. 630: A81. arXiv:1904.01591. Bibcode:2019A&A...630A..81B. doi:10.1051/0004-6361/201935598. ISSN 0004-6361. S2CID 102486551.
  7. ^ Feng, Fabo; Anglada-Escudé, Guillem; Tuomi, Mikko; Jones, Hugh R. A.; Chanamé, Julio; Butler, Paul R.; Janson, Markus (14 October 2019), "Detection of the nearest Jupiter analog in radial velocity and astrometry data", Monthly Notices of the Royal Astronomical Society, 490 (4): 5002–5016, arXiv:1910.06804, Bibcode:2019MNRAS.490.5002F, doi:10.1093/mnras/stz2912, S2CID 204575783
  8. ^ Stefansson, Gudmundur; et al. (2020), "A Sub-Neptune-sized Planet Transiting the M2.5 Dwarf G 9-40: Validation with the Habitable-zone Planet Finder", The Astronomical Journal, 159 (3): 100, arXiv:1912.00291, Bibcode:2020AJ....159..100S, doi:10.3847/1538-3881/ab5f15, S2CID 208526899
  9. ^ G 9-40 b
  10. ^ Perger, M.; et al. (April 2019). "Gliese 49: Activity evolution and detection of a super-Earth". Astronomy & Astrophysics. 624: 19. arXiv:1903.04808. Bibcode:2019A&A...624A.123P. doi:10.1051/0004-6361/201935192. ISSN 0004-6361. S2CID 85497416. A123.
  11. ^ a b c Jenkins, J. S.; Pozuelos, F. J.; Tuomi, M.; Berdiñas, Z. M.; Díaz, M. R.; Vines, J. I.; Suárez, Juan C.; Peña Rojas, P. A. (2019), "GJ 357: A low-mass planetary system uncovered by precision radial velocities and dynamical simulations", Monthly Notices of the Royal Astronomical Society, 490 (4): 5585–5595, arXiv:1909.00831, doi:10.1093/mnras/stz2937
  12. ^ Hobson, M. J.; et al. (2019), "The SOPHIE search for northern extrasolar planets", Astronomy & Astrophysics, 625: A18, arXiv:1902.05998, doi:10.1051/0004-6361/201834890, S2CID 85529763
  13. ^ Díaz, R. F.; et al. (2019), "The SOPHIE search for northern extrasolar planets", Astronomy & Astrophysics, 625: A17, arXiv:1902.06004, doi:10.1051/0004-6361/201935019, S2CID 262093697
  14. ^ Pinamonti, M.; Sozzetti, A.; Giacobbe, P.; Damasso, M.; Scandariato, G.; Perger, M.; González Hernández, J. I.; Lanza, A. F.; Maldonado, J.; Micela, G.; Suárez Mascareño, A.; Toledo-Padrón, B.; Affer, L.; Benatti, S.; Bignamini, A.; Bonomo, A. S.; Claudi, R.; Cosentino, R.; Desidera, S.; Maggio, A.; Martinez Fiorenzano, A.; Pagano, I.; Piotto, G.; Rainer, M.; Rebolo, R.; Ribas, I. (2019), "The HADES RV programme with HARPS-N at TNG", Astronomy & Astrophysics, 625: A126, arXiv:1903.11853, doi:10.1051/0004-6361/201834969, S2CID 259095444
  15. ^ Affer, L.; Damasso, M.; Micela, G.; Poretti, E.; Scandariato, G.; Maldonado, J.; Lanza, A. F.; Covino, E.; Rubio, A. Garrido (31 January 2019). "HADES RV program with HARPS-N at TNG. IX. A super-Earth around the M dwarf Gl686". Astronomy & Astrophysics. 622: A193. arXiv:1901.05338. Bibcode:2019A&A...622A.193A. doi:10.1051/0004-6361/201834868. ISSN 0004-6361. S2CID 118863481.
  16. ^ Morales, J. C.; et al. (2019). "A giant exoplanet orbiting a very-low-mass star challenges planet formation models". Science. 365 (6460): 1441–1445. arXiv:1909.12174. Bibcode:2019Sci...365.1441M. doi:10.1126/science.aax3198. ISSN 0036-8075. PMID 31604272. S2CID 202888425.
  17. ^ Nagel, E.; Czesla, S.; Schmitt, J. H. M. M.; Dreizler, S.; Anglada-Escudé, G.; Rodríguez, E.; Ribas, I.; Reiners, A.; Quirrenbach, A.; Amado, P. J.; Caballero, J. A.; Aceituno, J.; Béjar, V. J. S.; Cortés-Contreras, M.; González-Cuesta, L.; Guenther, E. W.; Henning, T.; Jeffers, S. V.; Kaminski, A.; Kürster, M.; Lafarga, M.; López-González, M. J.; Montes, D.; Morales, J. C.; Passegger, V. M.; Rodríguez-López, C.; Schweitzer, A.; Zechmeister, M. (2019), "The CARMENES search for exoplanets around M dwarfs", Astronomy & Astrophysics, 622: A153, arXiv:1901.02367, doi:10.1051/0004-6361/201834569
  18. ^ a b Zhou, G.; et al. (2019), "Two New HATNet Hot Jupiters around a Stars and the First Glimpse at the Occurrence Rate of Hot Jupiters from TESS", The Astronomical Journal, 158 (4): 141, arXiv:1906.00462, Bibcode:2019AJ....158..141Z, doi:10.3847/1538-3881/ab36b5, S2CID 173990300
  19. ^ Bello-Arufe, Aaron; Cabot, Samuel H. C.; Mendonça, João M.; Buchhave, Lars A.; Rathcke, Alexander D. (2022), "Mining the Ultrahot Skies of HAT-P-70b: Detection of a Profusion of Neutral and Ionized Species", The Astronomical Journal, 163 (2): 96, arXiv:2112.03292, Bibcode:2022AJ....163...96B, doi:10.3847/1538-3881/ac402e, S2CID 244920901
  20. ^ a b c d e f g h i j k l m n Feng, Fabo; Crane, Jeffrey D.; Wang, Sharon Xuesong; Teske, Johanna K.; Shectman, Stephen A.; Díaz, Matías R.; Thompson, Ian B.; Jones, Hugh R. A.; Butler, R. Paul (2019), "Search for Nearby Earth Analogs. I. 15 Planet Candidates Found in PFS Data", The Astrophysical Journal Supplement Series, 242 (2): 25, arXiv:1904.08567, Bibcode:2019ApJS..242...25F, doi:10.3847/1538-4365/ab1b16, S2CID 121128472
  21. ^ a b c d Rickman, E. L.; et al. (2019), "The CORALIE survey for southern extrasolar planets", Astronomy & Astrophysics, 625: A71, arXiv:1904.01573, Bibcode:2019A&A...625A..71R, doi:10.1051/0004-6361/201935356, S2CID 91184450
  22. ^ a b Dumusque, Xavier; et al. (2019), "Hot, rocky and warm, puffy super-Earths orbiting TOI-402 (HD 15337)", Astronomy & Astrophysics, 627: A43, arXiv:1903.05419, Bibcode:2019A&A...627A..43D, doi:10.1051/0004-6361/201935457, S2CID 119242369
  23. ^ a b Dragomir, Diana; et al. (2019), "TESS Delivers Its First Earth-sized Planet and a Warm Sub-Neptune", The Astrophysical Journal, 875 (2): L7, arXiv:1901.00051, Bibcode:2019ApJ...875L...7D, doi:10.3847/2041-8213/ab12ed, S2CID 129945503
  24. ^ Wittenmyer, Robert A.; et al. (2019). "Truly eccentric – I. Revisiting eight single-eccentric planetary systems". Monthly Notices of the Royal Astronomical Society. 484 (4): 5859–5867. arXiv:1901.08471. Bibcode:2019MNRAS.484.5859W. doi:10.1093/mnras/stz290.
  25. ^ Dorval, P.; Talens, G. J. J.; Otten, G. P. P. L.; Brahm, R.; Jordán, A.; Torres, P.; Vanzi, L.; Zapata, A.; Henry, T.; Paredes, L.; Jao, W. C.; James, H.; Hinojosa, R.; Bakos, G. A.; Csubry, Z.; Bhatti, W.; Suc, V.; Osip, D.; Mamajek, E. E.; Mellon, S. N.; Wyttenbach, A.; Stuik, R.; Kenworthy, M.; Bailey, J.; Ireland, M.; Crawford, S.; Lomberg, B.; Kuhn, R.; Snellen, I. (2020), "MASCARA-4 b/B Ring-1 b: A retrograde hot Jupiter around a bright A-type star", Astronomy & Astrophysics, 635: A60, arXiv:1904.02733, Bibcode:2020A&A...635A..60D, doi:10.1051/0004-6361/201935611, S2CID 102351446
  26. ^ Ahlers, John P.; Kruse, Ethan; Colón, Knicole D.; Dorval, Patrick; Talens, Geert Jan; Snellen, Ignas; Albrecht, Simon; Otten, Gilles; Ricker, George; Vanderspek, Roland; Latham, David; Seager, Sara; Winn, Joshua; Jenkins, Jon M.; Haworth, Kari; Cartwright, Scott; Morris, Robert; Rowden, Pam; Tenenbaum, Peter; Ting, Eric B. (2020), "Gravity-darkening Analysis of the Misaligned Hot Jupiter MASCARA-4 B", The Astrophysical Journal, 888 (2): 63, arXiv:1911.05025, Bibcode:2020ApJ...888...63A, doi:10.3847/1538-4357/ab59d0, S2CID 207863659
  27. ^ Zhang, Yapeng; Snellen, Ignas A. G.; Wyttenbach, Aurèlien; Nielsen, Louise D.; Lendl, Monika; Casasayas-Barris, Núria; Chaverot, Guillaume; Kesseli, Aurora Y.; Lovis, Christophe; Pepe, Francesco A.; Psaridi, Angelica; Seidel, Julia V.; Udry, Stéphane; Ulmer-Moll, Solène (2022), "Transmission spectroscopy of the ultra-hot Jupiter MASCARA-4 B", Astronomy & Astrophysics, 666: A47, arXiv:2208.11427, doi:10.1051/0004-6361/202244203, S2CID 251678624
  28. ^ Rickman, E. L.; et al. (May 2019). "The CORALIE survey for southern extrasolar planets. XVIII. Three new massive planets and two low-mass brown dwarfs at greater than 5 AU separation". Astronomy & Astrophysics. 625: 16. arXiv:1904.01573. Bibcode:2019A&A...625A..71R. doi:10.1051/0004-6361/201935356. S2CID 91184450. A71.
  29. ^ a b Kane, Stephen R.; Dalba, Paul A.; Li, Zhexing; Horch, Elliott P.; Hirsch, Lea A.; Horner, Jonathan; Wittenmyer, Robert A.; Howell, Steve B.; Everett, Mark E.; Butler, R. Paul; Tinney, Christopher G.; Carter, Brad D.; Wright, Duncan J.; Jones, Hugh R. A.; Bailey, Jeremy; o'Toole, Simon J. (2019), "Detection of Planetary and Stellar Companions to Neighboring Stars via a Combination of Radial Velocity and Direct Imaging Techniques", The Astronomical Journal, 157 (6): 252, arXiv:1904.12931, Bibcode:2019AJ....157..252K, doi:10.3847/1538-3881/ab1ddf, S2CID 140214626
  30. ^ Pinte, C.; Van Der Plas, G.; Ménard, F.; Price, D. J.; Christiaens, V.; Hill, T.; Mentiplay, D.; Ginski, C.; Choquet, E.; Boehler, Y.; Duchêne, G.; Perez, S.; Casassus, S. (2023), "Kinematic detection of a planet carving a gap in a protoplanetary disk", Nature Astronomy, 3 (12): 1109–1114, arXiv:1907.02538, doi:10.1038/s41550-019-0852-6, S2CID 195820690
  31. ^ a b Trifonov, Trifon; Stock, Stephan; Henning, Thomas; Reffert, Sabine; Kürster, Martin; Lee, Man Hoi; Bitsch, Bertram; Butler, R. Paul; Vogt, Steven S. (2019), "Two Jovian Planets around the Giant Star HD 202696: A Growing Population of Packed Massive Planetary Pairs around Massive Stars?", The Astronomical Journal, 157 (3): 93, arXiv:1901.01935, Bibcode:2019AJ....157...93T, doi:10.3847/1538-3881/aafa11, S2CID 119047091
  32. ^ a b Espinoza, Néstor; et al. (2019), "HD 213885b: A transiting 1-d-period super-Earth with an Earth-like composition around a bright (V = 7.9) star unveiled by TESS", Monthly Notices of the Royal Astronomical Society, 491 (2): 2982–2999, arXiv:1903.07694, doi:10.1093/mnras/stz3150
  33. ^ Huber, Daniel; et al. (2019), "A Hot Saturn Orbiting an Oscillating Late Subgiant Discovered byTESS", The Astronomical Journal, 157 (6): 245, arXiv:1901.01643, Bibcode:2019AJ....157..245H, doi:10.3847/1538-3881/ab1488, S2CID 102350758
  34. ^ Janson, Markus; Asensio-Torres, Ruben; André, Damien; Bonnefoy, Mickaël; Delorme, Philippe; Reffert, Sabine; Desidera, Silvano; Langlois, Maud; Chauvin, Gaël; Gratton, Raffaele; Bohn, Alexander J.; Eriksson, Simon C.; Marleau, Gabriel-Dominique; Mamajek, Eric E.; Vigan, Arthur; Carson, Joseph C. (2019), "The B-Star Exoplanet Abundance Study: A co-moving 16–25 MJup companion to the young binary system HIP 79098", Astronomy & Astrophysics, 626: A99, arXiv:1906.02787, Bibcode:2019A&A...626A..99J, doi:10.1051/0004-6361/201935687, S2CID 174801322
  35. ^ a b c Vanderburg, Andrew; et al. (2019). "TESS Spots a Compact System of Super-Earths around the Naked-Eye Star HR 858". The Astrophysical Journal. 881 (1): L19. arXiv:1905.05193. Bibcode:2019ApJ...881L..19V. doi:10.3847/2041-8213/ab322d. S2CID 153311715.
  36. ^ Blunt, Sarah; Endl, Michael; Weiss, Lauren M.; Cochran, William D.; Howard, Andrew W.; MacQueen, Phillip J.; et al. (August 2019). "Radial Velocity Discovery of an Eccentric Jovian World Orbiting at 18 au". The Astronomical Journal. 158 (5): 181. arXiv:1908.09925. Bibcode:2019AJ....158..181B. doi:10.3847/1538-3881/ab3e63. S2CID 201646255.
  37. ^ Heller, René; Rodenbeck, Kai; Hippke, Michael (2019), "Transit least-squares survey", Astronomy & Astrophysics, 625: A31, arXiv:1904.00651, doi:10.1051/0004-6361/201935276, S2CID 90259349
  38. ^ a b c d Hedges, Christina; Saunders, Nicholas; Barentsen, Geert; Coughlin, Jeffrey L.; De Miranda Cardoso, Josè Vinícius; Kostov, Veselin B.; Dotson, Jessie; Cody, Ann Marie (2019), "Four Small Planets Buried in K2 Systems: What Can We Learn for TESS?", The Astrophysical Journal, 880 (1): L5, arXiv:1907.08244, Bibcode:2019ApJ...880L...5H, doi:10.3847/2041-8213/ab2a74, S2CID 197935399
  39. ^ a b c d e f g h i j k l m n o p Heller, René; Hippke, Michael; Rodenbeck, Kai (2019), "Transit least-squares survey", Astronomy & Astrophysics, 627: A66, arXiv:1905.09038, doi:10.1051/0004-6361/201935600, S2CID 251031584
  40. ^ Wells, R.; Poppenhaeger, K.; Watson, C. A. (2019), "Validation of a temperate fourth planet in the K2-133 multiplanet system", Monthly Notices of the Royal Astronomical Society, 487 (2): 1865–1873, arXiv:1905.05206, doi:10.1093/mnras/stz1334
  41. ^ Hamann, Aaron; Montet, Benjamin T.; Fabrycky, Daniel C.; Agol, Eric; Kruse, Ethan (2019), "K2-146: Discovery of Planet c, Precise Masses from Transit Timing, and Observed Precession", The Astronomical Journal, 158 (3): 133, arXiv:1907.10620, Bibcode:2019AJ....158..133H, doi:10.3847/1538-3881/ab32e3, S2CID 198898902
  42. ^ a b c Adams, Elisabeth R.; Jackson, Brian; Johnson, Samantha; Ciardi, David R.; Cochran, William D.; Endl, Michael; Everett, Mark E.; Furlan, Elise; Howell, Steve B.; Jayanthi, Prasanna; MacQueen, Phillip J.; Matson, Rachel A.; Partyka-Worley, Ciera; Schlieder, Joshua; Scott, Nicholas J.; Stanton, Sevio M.; Ziegler, Carl (2020), Ultra Short Period Planets in K2 III: Neighbors Are Common With 12 New Multi-Planet Systems and 26 Newly Validated Planets in Campaigns 0-8, 10, arXiv:2011.11698
  43. ^ Alonso, E Díez; Hernández, J I González; Toledo–Padrón, B.; Gómez, S L Suárez; Mascareño, A Suárez; Aguado, D. S.; Gutiérrez, C González; Cabrera-Lavers, A.; Carballido–Landeira, J.; Bonavera, L.; Juez, F J de Cos; Rebolo, R. (2019), "A transiting super-Earth close to the inner edge of the habitable zone of an M0 dwarf star", Monthly Notices of the Royal Astronomical Society, arXiv:1901.04739, doi:10.1093/mnras/sty3467
  44. ^ Feinstein, Adina D.; et al. (7 January 2019). "K2-288Bb: A Small Temperate Planet in a Low-mass Binary System Discovered by Citizen Scientists" (PDF). The Astronomical Journal. 157 (2): 40. arXiv:1902.02789. Bibcode:2019AJ....157...40F. doi:10.3847/1538-3881/aafa70. hdl:1721.1/121222.
  45. ^ a b Hjorth, M.; Justesen, A. B.; Hirano, T.; Albrecht, S.; Gandolfi, D.; Dai, F.; Alonso, R.; Barragán, O.; Esposito, M.; Kuzuhara, M.; Lam, K. W. F.; Livingston, J. H.; Montanes-Rodriguez, P.; Narita, N.; Nowak, G.; Prieto-Arranz, J.; Redfield, S.; Rodler, F.; Van Eylen, V.; Winn, J. N.; Antoniciello, G.; Cabrera, J.; Cochran, W. D.; Csizmadia, Sz; De Leon, J.; Deeg, H.; Eigmüller, Ph; Endl, M.; Erikson, A.; et al. (2019), "K2-290: a warm Jupiter and a mini-Neptune in a triple-star system", Monthly Notices of the Royal Astronomical Society, 484 (3): 3522, arXiv:1901.03716, Bibcode:2019MNRAS.484.3522H, doi:10.1093/mnras/stz139
  46. ^ a b Hjorth, Maria; Albrecht, Simon; Hirano, Teruyuki; Winn, Joshua N.; Dawson, Rebekah I.; Zanazzi, J. J.; Knudstrup, Emil; Sato, Bun'ei (2021), "A backward-spinning star with two coplanar planets", Proceedings of the National Academy of Sciences of the United States of America, 118 (8): e2017418118, arXiv:2102.07677, Bibcode:2021PNAS..11817418H, doi:10.1073/pnas.2017418118, PMC 7923373, PMID 33593909
  47. ^ Kosiarek, Molly R.; et al. (2019), "K2-291b: A Rocky Super-Earth in a 2.2 day Orbit", The Astronomical Journal, 157 (3): 116, arXiv:1901.04558, Bibcode:2019AJ....157..116K, doi:10.3847/1538-3881/aafe83, S2CID 119252319
  48. ^ a b Dattilo, Anne; Vanderburg, Andrew; Shallue, Christopher J.; Mayo, Andrew W.; Berlind, Perry; Bieryla, Allyson; Calkins, Michael L.; Esquerdo, Gilbert A.; Everett, Mark E.; Howell, Steve B.; Latham, David W.; Scott, Nicholas J.; Yu, Liang (2019), "Identifying Exoplanets with Deep Learning. II. Two New Super-Earths Uncovered by a Neural Network in K2 Data", The Astronomical Journal, 157 (5): 169, arXiv:1903.10507, Bibcode:2019AJ....157..169D, doi:10.3847/1538-3881/ab0e12, S2CID 85518100
  49. ^ Kovacs, Geza (2020), "More planetary candidates from K2 Campaign 5 using TRAN_K2", Astronomy & Astrophysics, 643: A169, arXiv:2008.10075, Bibcode:2020A&A...643A.169K, doi:10.1051/0004-6361/202038726, S2CID 221266076
  50. ^ De Leon, J. P.; Livingston, J.; Endl, M.; Cochran, W. D.; Hirano, T.; García, R. A.; Mathur, S.; Lam, K W F.; Korth, J.; Trani, A. A.; Dai, F.; Díez Alonso, E.; Castro-González, A.; Fridlund, M.; Fukui, A.; Gandolfi, D.; Kabath, P.; Kuzuhara, M.; Luque, R.; Savel, A. B.; Gill, H.; Dressing, C.; Giacalone, S.; Narita, N.; Palle, E.; Van Eylen, V.; Tamura, M. (2021), "37 new validated planets in overlapping K2 campaigns", Monthly Notices of the Royal Astronomical Society, 508: 195–218, arXiv:2108.05621, doi:10.1093/mnras/stab2305
  51. ^ Rampalli, Rayna; Vanderburg, Andrew; Bieryla, Allyson; Latham, David W.; Quinn, Samuel N.; Baranec, Christoph; Berlind, Perry; Calkins, Michael L.; Cochran, William D.; Duev, Dmitry A.; Endl, Michael; Esquerdo, Gilbert A.; Jensen-Clem, Rebecca; Law, Nicholas M.; Mayo, Andrew W.; Riddle, Reed; Salama, Maïssa (2019), "A Hot Saturn Near (But Unassociated with) the Open Cluster NGC 1817", The Astronomical Journal, 158 (2): 62, arXiv:1906.02395, Bibcode:2019AJ....158...62R, doi:10.3847/1538-3881/ab27c2, S2CID 174802801
  52. ^ a b Two temperate sub-Neptunes transiting the star EPIC 212737443
  53. ^ Johns, Daniel; et al. (2019), "KELT-23Ab: A Hot Jupiter Transiting a Near-solar Twin Close to the TESS and JWST Continuous Viewing Zones", The Astronomical Journal, 158 (2): 78, arXiv:1903.00031, Bibcode:2019AJ....158...78J, doi:10.3847/1538-3881/ab24c7, S2CID 119252456
  54. ^ Weiss, Lauren M.; Fabrycky, Daniel C.; Agol, Eric; Mills, Sean M.; Howard, Andrew W.; Isaacson, Howard; Petigura, Erik A.; Fulton, Benjamin; Hirsch, Lea; Sinukoff, Evan (2020-04-29). "The Discovery of the Long-Period, Eccentric Planet Kepler-88 d and System Characterization with Radial Velocities and Photodynamical Analysis" (PDF). The Astronomical Journal. 159 (5): 242. arXiv:1909.02427. Bibcode:2020AJ....159..242W. doi:10.3847/1538-3881/ab88ca. ISSN 1538-3881. S2CID 202539420.
  55. ^ a b Sun, L.; Ioannidis, P.; Gu, S.; Schmitt, J. H. M. M.; Wang, X.; Kouwenhoven, M. B. N. (2019), "Kepler-411: a four-planet system with an active host star", Astronomy & Astrophysics, 624: A15, arXiv:1902.09719, Bibcode:2019A&A...624A..15S, doi:10.1051/0004-6361/201834275, S2CID 102481339
  56. ^ Yang, Hongjing; et al. (2020). "KMT-2016-BLG-1836Lb: A Super-Jovian Planet from a High-cadence Microlensing Field". The Astronomical Journal. 159 (3): 98. arXiv:1908.10011. Bibcode:2020AJ....159...98Y. doi:10.3847/1538-3881/ab660e. S2CID 201646063.
  57. ^ Jung, Youn Kil; Gould, Andrew; Zang, Weicheng; Hwang, Kyu-Ha; Ryu, Yoon-Hyun; Han, Cheongho; Yee, Jennifer C.; Albrow, Michael D.; Chung, Sun-Ju; Shin, In-Gu; Shvartzvald, Yossi; Zhu, Wei; Cha, Sang-Mok; Kim, Dong-Jin; Kim, Hyoun-Woo; Kim, Seung-Lee; Lee, Chung-Uk; Lee, Dong-Joo; Lee, Yongseok; Park, Byeong-Gon; Pogge, Richard W.; KMTNet Collaboration; Penny, Matthew T.; Mao, Shude; Fouqué, Pascal; Wang, Tianshu; CFHT Collaboration (2018), "KMT-2017-BLG-0165Lb: A Super-Neptune mass planet Orbiting a Sun-like Host Star", The Astronomical Journal, 157 (2): 72, arXiv:1809.01288, Bibcode:2019AJ....157...72J, doi:10.3847/1538-3881/aaf87f, S2CID 119096973
  58. ^ Ryu, Yoon-Hyun; Mróz, Przemek; Gould, Andrew; Hwang, Kyu-Ha; Kim, Hyoun-Woo; Yee, Jennifer C.; Albrow, Michael D.; Chung, Sun-Ju; Jung, Youn Kil; Shin, In-Gu; Shvartzvald, Yossi; Zang, Weicheng; Cha, Sang-Mok; Kim, Dong-Jin; Kim, Seung-Lee; Lee, Chung-Uk; Lee, Dong-Joo; Lee, Yongseok; Park, Byeong-Gon; Han, Cheongho; Pogge, Richard W.; Udalski, Andrzej; Poleski, Radek; Skowron, Jan; Szymański, Michał K.; Soszyński, Igor; Pietrukowicz, Paweł; Kozłowski, Szymon; Ulaczyk, Krzysztof; et al. (2021), "KMT-2017-BLG-2820 and the Nature of the Free-Floating Planet Population", The Astronomical Journal, 161 (3): 126, arXiv:2010.07527, Bibcode:2021AJ....161..126R, doi:10.3847/1538-3881/abd55f, S2CID 222378863
  59. ^ a b Crossfield, Ian J. M.; et al. (2019), "A Super-Earth and Sub-Neptune Transiting the Late-type M Dwarf LP 791-18", The Astrophysical Journal Letters, 883 (1): L16, arXiv:1906.09267, Bibcode:2019ApJ...883L..16C, doi:10.3847/2041-8213/ab3d30, S2CID 195345668
  60. ^ a b c Kostov, Veselin B.; et al. (2019), "The L 98-59 System: Three Transiting, Terrestrial-size Planets Orbiting a Nearby M Dwarf", The Astronomical Journal, 158 (1): 32, arXiv:1903.08017, Bibcode:2019AJ....158...32K, doi:10.3847/1538-3881/ab2459, S2CID 118855908
  61. ^ a b Barnes, J. R.; et al. (2019-06-11), Frequency of planets orbiting M dwarfs in the Solar neighbourhood, arXiv:1906.04644v1, Bibcode:2019arXiv190604644T.
  62. ^ a b Feng, Fabo; Shectman, Stephen A.; Clement, Matthew S.; Vogt, Steven S.; Tuomi, Mikko; Teske, Johanna K.; Burt, Jennifer; Crane, Jeffrey D.; Holden, Bradford; Sharon Xuesong Wang; Thompson, Ian B.; Diaz, Matias R.; Paul Butler, R. (2020), "Search for Nearby Earth Analogs. III. Detection of ten new planets, three planet candidates, and confirmation of three planets around eleven nearby M dwarfs", The Astrophysical Journal Supplement Series, 250 (2): 29, arXiv:2008.07998, Bibcode:2020ApJS..250...29F, doi:10.3847/1538-4365/abb139, S2CID 221150644
  63. ^ a b Quirrenbach, A.; Passegger, V. M.; Trifonov, T.; Amado, P. J.; Caballero, J. A.; Reiners, A.; Ribas, I.; Aceituno, J.; Béjar, V. J. S.; Chaturvedi, P.; González-Cuesta, L.; Henning, T.; Herrero, E.; Kaminski, A.; Kürster, M.; Lalitha, S.; Lodieu, N.; López-González, M. J.; Montes, D.; Pallé, E.; Perger, M.; Pollacco, D.; Reffert, S.; Rodríguez, E.; López, C. Rodríguez; Shan, Y.; Tal-Or, L.; Osorio, M. R. Zapatero; Zechmeister, M. (2022), "The CARMENES search for exoplanets around M dwarfs", Astronomy & Astrophysics, 663: A48, arXiv:2203.16504, doi:10.1051/0004-6361/202142915, S2CID 247835988
  64. ^ The CARMENES search for exoplanets around M dwarfs Detection of a mini-Neptune around LSPM J2116+0234 and refinement of orbital parameters of a super-Earth around GJ 686 (BD+18 3421)
  65. ^ Winters, Jennifer G.; et al. (2019), "Three Red Suns in the Sky: A Transiting, Terrestrial Planet in a Triple M-dwarf System at 6.9 pc", The Astronomical Journal, 158 (4): 152, arXiv:1906.10147, Bibcode:2019AJ....158..152W, doi:10.3847/1538-3881/ab364d, S2CID 195584444
  66. ^ Kondo, Iona; et al. (2019), "MOA-bin-29b: A Microlensing Gas-giant Planet Orbiting a Low-mass Host Star", The Astronomical Journal, 158 (6): 224, arXiv:1905.01239, Bibcode:2019AJ....158..224K, doi:10.3847/1538-3881/ab4e9e, S2CID 145052576
  67. ^ Eigmüller, Philipp; et al. (2019), "NGTS-5b: A highly inflated planet offering insights into the sub-Jovian desert", Astronomy & Astrophysics, 625: A142, arXiv:1905.02593, Bibcode:2019A&A...625A.142E, doi:10.1051/0004-6361/201935206, S2CID 146809360
  68. ^ Vines, Jose I.; et al. (2019), "NGTS-6b: An ultrashort period hot-Jupiter orbiting an old K dwarf", Monthly Notices of the Royal Astronomical Society, 489 (3): 4125–4134, arXiv:1904.07997, doi:10.1093/mnras/stz2349
  69. ^ a b Costes, Jean C.; et al. (2019), "NGTS-8b and NGTS-9b: Two non-inflated hot-Jupiters", Monthly Notices of the Royal Astronomical Society, arXiv:1911.02814, doi:10.1093/mnras/stz3140
  70. ^ Zhu, Li-Ying; Qian, Sheng-Bang; Fernández Lajús, Eduardo; Wang, Zhi-Hua; Li, Lin-Jia; -J, Li L. (2019). "A close-in substellar object orbiting the sdOB-type eclipsing-binary system NSVS 14256825". Research in Astronomy and Astrophysics. 19 (9): 134. arXiv:1904.11664. Bibcode:2019RAA....19..134Z. doi:10.1088/1674-4527/19/9/134. S2CID 135471537.
  71. ^ Song, Shuo; Mai, Xinyu; Mutel, Robert L.; Pulley, David; Faillace, George; Watkins, Americo (2019). "An Updated Model for Circumbinary Planets Orbiting the SDB Binary NY Virginis". The Astronomical Journal. 157 (5): 184. Bibcode:2019AJ....157..184S. doi:10.3847/1538-3881/ab1139.
  72. ^ "The Extrasolar Planet Encyclopaedia — OGLE-2013-BLG-0911L b". Extrasolar Planets Encyclopaedia. 1995.
  73. ^ Nagakane, M.; et al. (2019), "OGLE-2015-BLG-1649Lb: A Gas Giant Planet around a Low-mass Dwarf", The Astronomical Journal, 158 (5): 212, arXiv:1907.11536, Bibcode:2019AJ....158..212N, doi:10.3847/1538-3881/ab4881, S2CID 198953240
  74. ^ "The Extrasolar Planet Encyclopaedia — OGLE-2016-BLG-1227 b". Extrasolar Planets Encyclopaedia. 1995.
  75. ^ Ryu, Yoon-Hyun; et al. (2020), "OGLE-2018-BLG-0532Lb: Cold Neptune with Possible Jovian Sibling", The Astronomical Journal, 160 (4): 183, arXiv:1905.08148, Bibcode:2020AJ....160..183R, doi:10.3847/1538-3881/abaa3f, S2CID 159041062
  76. ^ Jung, Youn Kil; et al. (2019), "Spitzer Parallax of OGLE-2018-BLG-0596: A Low-mass-ratio Planet around an M Dwarf", The Astronomical Journal, 158 (1): 28, arXiv:1905.05873, Bibcode:2019AJ....158...28J, doi:10.3847/1538-3881/ab237f, S2CID 155092466
  77. ^ Han, Cheongho; et al. (2019), "Spectroscopic Mass and Host-star Metallicity Measurements for Newly Discovered Microlensing Planet OGLE-2018-BLG-0740Lb", The Astronomical Journal, 158 (3): 102, arXiv:1905.00155, Bibcode:2019AJ....158..102H, doi:10.3847/1538-3881/ab2df4, S2CID 141561615
  78. ^ a b Han, Cheongho; et al. (2019), "OGLE-2018-BLG-1011Lb,c: Microlensing Planetary System with Two Giant Planets Orbiting a Low-mass Star", The Astronomical Journal, 158 (3): 114, arXiv:1907.01741, Bibcode:2019AJ....158..114H, doi:10.3847/1538-3881/ab2f74, S2CID 195791850
  79. ^ "A Pair of Fledgling Planets Directly Seen Growing Around a Young Star". hubblesite.org. NASA. 3 June 2019. Retrieved 3 June 2019.
  80. ^ a b c Alsubai, Khalid; Tsvetanov, Zlatan I.; Pyrzas, Stylianos; Latham, David W.; Bieryla, Allyson; Eastman, Jason; Mislis, Dimitris; Esquerdo, Gilbert A.; Southworth, John; Mancini, Luigi; Esamdin, Ali; Liu, Jinzhong; Ma, Lu; Bretton, Marc; Pallé, Enric; Murgas, Felipe; Vilchez, Nicolas P. E.; Parviainien, Hannu; Montañes-Rodriguez, Pilar; Narita, Norio; Fukui, Akihiko; Kusakabe, Nobuhiko; Tamura, Motohide; Barkaoui, Khalid; Pozuelos, Francisco; Gillon, Michael; Jehin, Emmanuel; Benkhaldoun, Zouhair; Daassou, Ahmed; Dalee, Hani (2019), "Qatar Exoplanet Survey: Qatar-8b, 9b, and 10b—A Hot Saturn and Two Hot Jupiters", The Astronomical Journal, 157 (6): 224, arXiv:1903.09258, Bibcode:2019AJ....157..224A, doi:10.3847/1538-3881/ab19bc, S2CID 85459500
  81. ^ Manser, Christopher J.; et al. (April 2019). "A planetesimal orbiting within the debris disc around a white dwarf star". Science. 364 (6435): 66–69. arXiv:1904.02163. Bibcode:2019Sci...364...66M. doi:10.1126/science.aat5330. PMID 30948547. S2CID 96434522.
  82. ^ a b Caballero, J. A.; Reiners, Ansgar; Ribas, I.; Dreizler, S.; Zechmeister, M.; et al. (12 June 2019). "The CARMENES search for exoplanets around M dwarfs. Two temperate Earth-mass planet candidates around Teegarden's Star" (PDF). Astronomy & Astrophysics. 627: A49. arXiv:1906.07196. Bibcode:2019A&A...627A..49Z. doi:10.1051/0004-6361/201935460. ISSN 0004-6361. S2CID 189999121.
  83. ^ a b c Nielsen, L. D.; Gandolfi, D.; Armstrong, D. J.; Jenkins, J. S.; Fridlund, M.; Santos, N. C.; Dai, F.; Adibekyan, V.; Luque, R.; Steffen, J. H.; Esposito, M.; Meru, F.; Sabotta, S.; Bolmont, E.; Kossakowski, D.; Otegi, J. F.; Murgas, F.; Stalport, M.; Rodler, F.; Díaz, M. R.; Kurtovic, N. T.; Ricker, G.; Vanderspek, R.; Latham, D. W.; Seager, S.; Winn, J. N.; Jenkins, J. M.; Allart, R.; Almenara, J. M.; et al. (2020), "Mass determinations of the three mini-Neptunes transiting TOI-125", Monthly Notices of the Royal Astronomical Society, 492 (4): 5399, arXiv:2001.08834, Bibcode:2020MNRAS.492.5399N, doi:10.1093/mnras/staa197
  84. ^ "exoplanet.eu toi-125_d". Extrasolar Planets Encyclopaedia.[dead link]
  85. ^ a b Kossakowski, Diana; et al. (2019), "TOI-150b and TOI-163b: Two transiting hot Jupiters, one eccentric and one inflated, revealed by TESS near and at the edge of the JWST CVZ", Monthly Notices of the Royal Astronomical Society, 490: 1094–1110, arXiv:1906.09866, doi:10.1093/mnras/stz2433
  86. ^ Rodriguez, Joseph E.; et al. (2019), "An Eccentric Massive Jupiter Orbiting a Subgiant on a 9.5-day Period Discovered in the Transiting Exoplanet Survey Satellite Full Frame Images", The Astronomical Journal, 157 (5): 191, arXiv:1901.09950, Bibcode:2019AJ....157..191R, doi:10.3847/1538-3881/ab11d9, S2CID 119314505
  87. ^ Kostov, Veselin B.; Schlieder, Joshua E.; et al. (2019). "The L 98-59 System: Three Transiting, Terrestrial-size Planets Orbiting a Nearby M Dwarf". The Astronomical Journal. 158 (1): 32. arXiv:1903.08017. Bibcode:2019AJ....158...32K. doi:10.3847/1538-3881/ab2459. hdl:1721.1/124742. ISSN 1538-3881. S2CID 118855908.
  88. ^ Demangeon, O. D. S.; Zapatero Osorio, M. R.; Alibert, Y.; Barros, S. C. C.; Adibekyan, V.; Tabernero, H. M.; Antoniadis-Karnavas, A.; Camacho, J. D.; al, et (2021). "Warm terrestrial planet with half the mass of Venus transiting a nearby star" (PDF). Astronomy & Astrophysics. 653: A41. arXiv:2108.03323. Bibcode:2021A&A...653A..41D. doi:10.1051/0004-6361/202140728. S2CID 236957385.
  89. ^ "Planet L 98-59 b". Extrasolar Planets Encyclopaedia. 1995. Retrieved 6 August 2021.
  90. ^ a b Teachey, Alex; Jansen, Tiffany; Bakos, Gaspar; Torres, Guillermo; Hartman, Joel; Nesvorný, David; Kipping, David (2019). "A resonant pair of warm giant planets revealed by TESS". Monthly Notices of the Royal Astronomical Society. 486 (4): 4980–4986. arXiv:1902.03900. doi:10.1093/mnras/stz1141.
  91. ^ a b Dawson, Rebekah I.; et al. (2019). "TOI-216b and TOI-216 c: Two Warm, Large Exoplanets in or Slightly Wide of the 2:1 Orbital Resonance". The Astronomical Journal. 158 (2): 65. arXiv:1904.11852. Bibcode:2019AJ....158...65D. doi:10.3847/1538-3881/ab24ba. S2CID 135466349.
  92. ^ a b Dawson, Rebekah I.; Huang, Chelsea X.; Brahm, Rafael; Collins, Karen A.; Hobson, Melissa J.; Jordán, Andrés; Dong, Jiayin; Korth, Judith; Trifonov, Trifon; Abe, Lyu; Agabi, Abdelkrim; Bruni, Ivan; Butler, R. Paul; Barbieri, Mauro; Collins, Kevin I.; Conti, Dennis M.; Crane, Jeffrey D.; Crouzet, Nicolas; Dransfield, Georgina; Evans, Phil; Espinoza, Néstor; Gan, Tianjun; Guillot, Tristan; Henning, Thomas; Lissauer, Jack J.; Jensen, Eric L. N.; Sainte, Wenceslas Marie; Mékarnia, Djamel; Myers, Gordon; et al. (2021), "Precise transit and radial-velocity characterization of a resonant pair: a warm Jupiter TOI-216c and eccentric warm Neptune TOI-216b", The Astronomical Journal, 161 (4): 161, arXiv:2102.06754, Bibcode:2021AJ....161..161D, doi:10.3847/1538-3881/abd8d0, S2CID 231924886
  93. ^ a b c "太陽系外惑星「TOI 270 b、c、d」を発見。地球外生命体の存在は?". sorae. 2019-07-30. Retrieved 2021-01-08.
  94. ^ a b c Van Eylen, Vincent; Astudillo-Defru, Nicola; Bonfils, Xavier; Livingston, J.; Hirano, T.; Luque, Rafael; Lam, K. W. F.; Justesen, A. B.; Winn, J. N.; Gandolfi, D.; Nowak, G.; Palle, E.; Albrecht, S.; Dai, F.; Campos Estrada, B.; Owen, J. E.; Foreman-Mackey, D.; Fridlund, M.; Korth, J.; Mathur, S.; Forveille, Thierry; Mikal-Evans, T.; Osborne, H. L. M.; Ho, C. S. K.; Almenara, José M.; Artigau, Étienne; Barragán, O.; Bouchy, François; Cabrera, J.; et al. (2021), "Masses and compositions of three small planets orbiting the nearby M dwarf L231-32 (TOI-270) and the M dwarf radius valley", Monthly Notices of the Royal Astronomical Society, arXiv:2101.01593, doi:10.1093/mnras/stab2143
  95. ^ Mikal-Evans, Thomas; Madhusudhan, Nikku; Dittmann, Jason; Guenther, Maximilian N.; Welbanks, Luis; Vincent Van Eylen; Crossfield, Ian J. M.; Daylan, Tansu; Kreidberg, Laura (2023), "Hubble Space Telescope Transmission Spectroscopy for the Temperate Sub-Neptune TOI-270 d: A Possible Hydrogen-rich Atmosphere Containing Water Vapor", The Astronomical Journal, 165 (3): 84, arXiv:2211.15576, Bibcode:2023AJ....165...84M, doi:10.3847/1538-3881/aca90b, S2CID 254044155
  96. ^ a b Davis, Allen B.; Wang, Songhu; et al. (2020). "TOI 564 b and TOI 905 b: Grazing and Fully Transiting Hot Jupiters Discovered by TESS". Astronomical Journal. 160 (5): 229. arXiv:1912.10186. Bibcode:2020AJ....160..229D. doi:10.3847/1538-3881/aba49d. hdl:1721.1/134083. S2CID 209444463.
  97. ^ David, Trevor J.; Cody, Ann Marie; Hedges, Christina L.; Mamajek, Eric E.; Hillenbrand, Lynne A.; Ciardi, David R.; Beichman, Charles A.; Petigura, Erik A.; Fulton, Benjamin J.; Isaacson, Howard T.; Howard, Andrew W.; Gagné, Jonathan; Saunders, Nicholas K.; Rebull, Luisa M.; Stauffer, John R.; Vasisht, Gautam; Hinkley, Sasha (2019), "A Warm Jupiter-sized Planet Transiting the Pre-main-sequence Star V1298 Tau", The Astronomical Journal, 158 (2): 79, arXiv:1902.09670, Bibcode:2019AJ....158...79D, doi:10.3847/1538-3881/ab290f, S2CID 119003936
  98. ^ a b c David, Trevor J.; Petigura, Erik A.; Luger, Rodrigo; Foreman-Mackey, Daniel; Livingston, John H.; Mamajek, Eric E.; Hillenbrand, Lynne A. (2019), "Four newborn planets transiting the young solar analog V1298 Tau", The Astrophysical Journal, 885 (1): L12, arXiv:1910.04563, Bibcode:2019ApJ...885L..12D, doi:10.3847/2041-8213/ab4c99, S2CID 204008446
  99. ^ a b Pearson, Kyle A. (2019), "A Search for Multiplanet Systems with TESS Using a Bayesian N-body Retrieval and Machine Learning", The Astronomical Journal, 158 (6): 243, arXiv:1907.03377, Bibcode:2019AJ....158..243P, doi:10.3847/1538-3881/ab4e1c, S2CID 195833716
  100. ^ Maciejewski, G. (2020), "Search for Planets in Hot Jupiter Systems with Multi-Sector TESS Photometry. I. No Companions in Planetary Systems KELT-18, KELT-23, KELT-24, Qatar-8, WASP-62, WASP-100, WASP-119, and WASP-126", Acta Astronomica, 70 (3): 181, arXiv:2010.11977, Bibcode:2020AcA....70..181M, doi:10.32023/0001-5237/70.3.2, S2CID 225061977
  101. ^ a b c d Nielsen, L. D.; Bouchy, F.; Turner, O. D.; Anderson, D. R.; Barkaoui, K.; Benkhaldoun, Z.; Burdanov, A.; Cameron, A Collier; Delrez, L.; Gillon, M.; Ducrot, E.; Hellier, C.; Jehin, E.; Lendl, M.; Maxted, P F L.; Pepe, F.; Pollacco, D.; Pozuelos, F. J.; Queloz, D.; Ségransan, D.; Smalley, B.; Triaud, A H M J.; Udry, S.; West, R. G. (2019), "WASP-169, WASP-171, WASP-175, and WASP-182: Three hot Jupiters and one bloated sub-Saturn mass planet discovered by WASP-South", Monthly Notices of the Royal Astronomical Society, 489 (2): 2478–2487, arXiv:1904.10388, doi:10.1093/mnras/stz2351
  102. ^ a b c Turner, Oliver D.; Anderson, D. R.; Barkaoui, K.; Bouchy, F.; Benkhaldoun, Z.; Brown, D J A.; Burdanov, A.; Collier Cameron, A.; Ducrot, E.; Gillon, M.; Hellier, C.; Jehin, E.; Lendl, M.; Maxted, P F L.; Nielsen, L. D.; Pepe, F.; Pollacco, D.; Pozuelos, F. J.; Queloz, D.; Ségransan, D.; Smalley, B.; Triaud, A H M J.; Udry, S.; West, R. G. (2019), "Three hot-Jupiters on the upper edge of the mass–radius distribution: WASP-177, WASP-181, and WASP-183", Monthly Notices of the Royal Astronomical Society, 485 (4): 5790–5799, arXiv:1903.06622, doi:10.1093/mnras/stz742
  103. ^ a b c d Hellier, Coel; Anderson, D. R.; Barkaoui, K.; Benkhaldoun, Z.; Bouchy, F.; Burdanov, A.; Collier Cameron, A.; Delrez, L.; Gillon, M.; Jehin, E.; Nielsen, L. D.; Maxted, P. F. L.; Pepe, F.; Pollacco, D.; Pozuelos, F. J.; Queloz, D.; Ségransan, D.; Smalley, B.; Triaud, A. H. M. J.; Turner, O. D.; Udry, S.; West, R. G. (2019), "WASP-South hot Jupiters: WASP-178b, WASP-184b, WASP-185b & WASP-192b", Monthly Notices of the Royal Astronomical Society, 490 (1): 1479, arXiv:1907.11667, Bibcode:2019MNRAS.490.1479H, doi:10.1093/mnras/stz2713
  104. ^ Temple, L. Y.; Hellier, C.; Anderson, D. R.; Barkaoui, K.; Bouchy, F.; Brown, D J A.; Burdanov, A.; Collier Cameron, A.; Delrez, L.; Ducrot, E.; Evans, D.; Gillon, M.; Jehin, E.; Lendl, M.; Maxted, P F L.; McCormac, J.; Murray, C.; Nielsen, L. D.; Pepe, F.; Pollacco, D.; Queloz, D.; Ségransan, D.; Smalley, B.; Thompson, S.; Triaud, A H M J.; Turner, O. D.; Udry, S.; West, R. G.; Zouhair, B. (2019), "WASP-180Ab: Doppler tomography of a hot Jupiter orbiting the primary star in a visual binary", Monthly Notices of the Royal Astronomical Society, 490 (2): 2467–2474, arXiv:1903.08002, doi:10.1093/mnras/stz2632