English

Validation of 13 Hot and Potentially Terrestrial TESS Planets

Earth and Planetary Astrophysics 2022-02-14 v2

Abstract

The James Webb Space Telescope (JWST) will be able to probe the atmospheres and surface properties of hot, terrestrial planets via emission spectroscopy. We identify 18 potentially terrestrial planet candidates detected by the Transiting Exoplanet Survey Satellite (TESS) that would make ideal targets for these observations. These planet candidates cover a broad range of planet radii (Rp0.62.0RR_{\rm p} \sim 0.6 - 2.0 R_\oplus) and orbit stars of various magnitudes (Ks=5.7810.78K_s = 5.78 - 10.78, V=8.415.69V = 8.4 - 15.69) and effective temperatures (Teff30006000T_{\rm eff }\sim 3000 - 6000 K). We use ground-based observations collected through the TESS Follow-up Observing Program (TFOP) and two vetting tools -- DAVE and TRICERATOPS -- to assess the reliabilities of these candidates as planets. We validate 13 planets: TOI-206 b, TOI-500 b, TOI-544 b, TOI-833 b, TOI-1075 b, TOI-1411 b, TOI-1442 b, TOI-1693 b, TOI-1860 b, TOI-2260 b, TOI-2411 b, TOI-2427 b, and TOI-2445 b. Seven of these planets (TOI-206 b, TOI-500 b, TOI-1075 b, TOI-1442 b, TOI-2260 b, TOI-2411 b, and TOI-2445 b) are ultra-short-period planets. TOI-1860 is the youngest (133±26133 \pm 26 Myr) solar twin with a known planet to date. TOI-2260 is a young (321±96321 \pm 96 Myr) G dwarf that is among the most metal-rich ([Fe/H] = 0.22±0.060.22 \pm 0.06 dex) stars to host an ultra-short-period planet. With an estimated equilibrium temperature of 2600\sim 2600 K, TOI-2260 b is also the fourth hottest known planet with Rp<2RR_{\rm p} < 2 \, R_\oplus.

Keywords

Cite

@article{arxiv.2201.12661,
  title  = {Validation of 13 Hot and Potentially Terrestrial TESS Planets},
  author = {Steven Giacalone and Courtney D. Dressing and Christina Hedges and Veselin B. Kostov and Karen A. Collins and Eric L. N. Jensen and Daniel A. Yahalomi and Allyson Bieryla and David R. Ciardi and Steve B. Howell and Jorge Lillo-Box and Khalid Barkaoui and Jennifer G. Winters and Elisabeth Matthews and John H. Livingston and Samuel N. Quinn and Boris S. Safonov and Charles Cadieux and E. Furlan and Ian J. M. Crossfield and Avi M. Mandell and Emily A. Gilbert and Ethan Kruse and Elisa V. Quintana and George R. Ricker and S. Seager and Joshua N. Winn and Jon M. Jenkins and Britt Duffy Adkins and David Baker and Thomas Barclay and David Barrado and Natalie M. Batalha and Alexander A. Belinski and Zouhair Benkhaldoun and Lars A. Buchhave and Luca Cacciapuoti and David Charbonneau and Ashley Chontos and Jessie L. Christiansen and Ryan Cloutier and Kevin I. Collins and Dennis M. Conti and Neil Cutting and Scott Dixon and René Doyon and Mohammed El Mufti and Emma Esparza-Borges and Zahra Essack and Akihiko Fukui and Tianjun Gan and Kaz Gary and Mourad Ghachoui and Michaël Gillon and Eric Girardin and Ana Glidden and Erica J. Gonzales and Pere Guerra and Elliott P. Horch and Krzysztof G. Helminiak and Andrew W. Howard and Daniel Huber and Jonathan M. Irwin and Giovanni Isopi and Emmanuël Jehin and Taiki Kagetani and Stephen R. Kane and Kiyoe Kawauchi and John F. Kielkopf and Pablo Lewin and Lindy Luker and Michael B. Lund and Franco Mallia and Shude Mao and Bob Massey and Rachel A. Matson and Ismael Mireles and Mayuko Mori and Felipe Murgas and Norio Narita and Tanner O`Dwyer and Erik A. Petigura and Alex S. Polanski and Francisco J. Pozuelos and Enric Palle and Hannu Parviainen and Peter P. Plavchan and Howard M. Relles and Paul Robertson and Mark E. Rose and Pamela Rowden and Arpita Roy and Arjun B. Savel and Joshua E. Schlieder and Chloe Schnaible and Richard P. Schwarz and Ramotholo Sefako and Aleksandra Selezneva and Brett Skinner and Chris Stockdale and Ivan A. Strakhov and Thiam-Guan Tan and Guillermo Torres and René Tronsgaard and Joseph D. Twicken and David Vermilion and Ian A. Waite and Bradley Walter and Gavin Wang and Carl Ziegler and Yujie Zou},
  journal= {arXiv preprint arXiv:2201.12661},
  year   = {2022}
}