4.6 Article

The L 98-59 System: Three Transiting, Terrestrial-size Planets Orbiting a Nearby M Dwarf

期刊

ASTRONOMICAL JOURNAL
卷 158, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.3847/1538-3881/ab2459

关键词

planets and satellites: detection; stars: individual (TIC 307210830 TOI-175); techniques: photometric

资金

  1. NASA's Science Mission directorate
  2. National Aeronautics and Space Administration under the Exoplanet Exploration Program
  3. John Templeton Foundation
  4. ESO/VLT [0102.C-0503(A)]
  5. Robert Martin Ayers Sciences Fund
  6. NSF [AST-1412587]
  7. European Research Council under the European Union [336480]
  8. ARC grant - Wallonia-Brussels Federation
  9. Jet Propulsion Laboratory (JPL) - NASA
  10. JSPS KAKENHI [JP18H01265, 18H05439]
  11. JST PRESTO [JPMJPR1775]
  12. STFC [ST/R000824/1]
  13. [GS-2018B-LP-101]
  14. European Research Council (ERC) [336480] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

We report the Transiting Exoplanet Survey Satellite (TESS) discovery of three terrestrial-size planets transiting L 98-59 (TOI-175, TIC 307210830)-a bright M dwarf at a distance of 10.6 pc. Using the Gaia-measured distance and broadband photometry, we find that the host star is an M3 dwarf. Combined with the TESS transits from three sectors, the corresponding stellar parameters yield planet radii ranging from 0.8 R-circle plus to 1.6 R-circle plus. All three planets have short orbital periods, ranging from 2.25 to 7.45 days with the outer pair just wide of a 2:1 period resonance. Diagnostic tests produced by the TESS Data Validation Report and the vetting package DAVE rule out common false-positive sources. These analyses, along with dedicated follow-up and the multiplicity of the system, lend confidence that the observed signals are caused by planets transiting L 98-59 and are not associated with other sources in the field. The L 98-59 system is interesting for a number of reasons: the host star is bright (V = 11.7 mag, K = 7.1 mag) and the planets are prime targets for further follow-up observations including precision radial-velocity mass measurements and future transit spectroscopy with the James Webb Space Telescope; the near-resonant configuration makes the system a laboratory to study planetary system dynamical evolution; and three planets of relatively similar size in the same system present an opportunity to study terrestrial planets where other variables (age, metallicity, etc.) can be held constant. L 98-59 will be observed in four more TESS sectors, which will provide a wealth of information on the three currently known planets and have the potential to reveal additional planets in the system.

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