posted on 2022-06-16, 09:30authored bySamuel Gill, Solène Ulmer-Moll, Peter J Wheatley, Daniel Bayliss, Matthew R Burleigh, Jack S Acton, Sarah L Casewell, Christopher A Watson, Monika Lendl, Hannah L Worters, Ramotholo R Sefako, David R Anderson, Douglas R Alves, François Bouchy, Edward M Bryant, Philipp Eigmüller, Edward Gillen, Michael R Goad, Nolan Grieves, Maximilian N Günther, Beth A Henderson, James S Jenkins, Lokesh Mishra, Maximiliano Moyano, Hugh P Osborn, Rosanna H Tilbrook, Stéphane Udry, Jose I Vines, Richard G West
<p>We are using precise radial velocities from CORALIE together with precision photometry from the Next Generation Transit Survey (NGTS) to follow-up stars with single-transit events detected with the Transiting Exoplanet Survey Satellite (TESS). As part of this survey, we identified a single transit on the star TIC-320687387, a bright (T = 11.6) G-dwarf observed by TESS in Sectors 13 and 27. From subsequent monitoring of TIC-320687387 with CORALIE, NGTS, and Lesedi we determined that the companion, TIC-320687387 B, is a very low-mass star with a mass of 96.2±1.92.0 MJ and radius of 1.14±0.020.02 RJ placing it close to the hydrogen burning limit (∼80 MJ). TIC-320687387 B is tidally decoupled and has an eccentric orbit, with a period of 29.77381 d and an eccentricity of 0.366 ± 0.003. Eclipsing systems such as TIC-320687387 AB allow us to test stellar evolution models for low-mass stars, which in turn are needed to calculate accurate masses and radii for exoplanets orbiting single low-mass stars. The sizeable orbital period of TIC-320687387 B makes it particularly valuable as its evolution can be assumed to be free from perturbations caused by tidal interactions with its G-type host star.</p>
History
Citation
Monthly Notices of the Royal Astronomical Society, Volume 513, Issue 2, June 2022, Pages 1785–1793, https://doi.org/10.1093/mnras/stac798
Author affiliation
Department of Physics and Astronomy, University of Leicester