Searching for GEMS TOI-7149 b, an Inflated Giant Planet Causing a 12% Transit of a Fully Convective M-dwarf

Open Access
Authors
  • Shubham Kanodia
  • Caleb I. Cañas
  • Suvrath Mahadevan
  • Andrea S.J. Lin
  • Henry A. Kobulnicky
  • Ian Karfs
  • Alexina Birkholz
  • Andrew Monson
  • Arvind F. Gupta
  • Mark Everett
  • Michael Rodruck
  • Rowen I. Glusman
  • Te Han
  • William D. Cochran
  • Chad F. Bender
  • Scott A. Diddams
  • Daniel Krolikowski
  • Samuel Halverson
  • Jessica Libby-Roberts
  • Joe P. Ninan
  • Paul Robertson
  • Arpita Roy
  • Christian Schwab
  • Gud̃mundur Stefánsson ORCID logo
Publication date 10-2025
Journal Astronomical Journal
Article number 203
Volume | Issue number 170 | 4
Organisations
  • Faculty of Science (FNWI) - Anton Pannekoek Institute for Astronomy (API)
Abstract

We describe the discovery and characterization of TOI-7149 b, a 0.705 ± 0.075 MJ, 1.18 ± 0.045 RJ gas giant on a ∼2.65 days period orbit transiting an M4V star with a mass of 0.344 ± 0.030 M and an effective temperature of 3363 ± 59 K. The planet was first discovered using NASA’s TESS mission, which we confirmed using a combination of ground-based photometry, radial velocities, and speckle imaging. The planet has one of the deepest transits of all known main-sequence planet hosts at ∼12% (Rp/R ∼ 0.33). Pushing the bounds of previous discoveries of giant exoplanets around M-dwarf stars (GEMS), TOI-7149 is one of the lowest mass M-dwarfs to host a transiting giant planet. We compare the sample of transiting GEMS to stars within 200 pc with a Gaia color-magnitude diagram and find that the GEMS hosts are likely to be high metallicity stars. We also analyze the sample of transiting giant planets using the nonparametric MRExo framework to compare the bulk density of warm Jupiters across stellar masses. We confirm our previous result that transiting Jupiters around early M-dwarfs have similar masses and densities to warm Jupiters around FGK stars, and extend this to mid M-dwarfs, thereby suggesting a potential commonality in their formation mechanisms.

Document type Article
Language English
Published at https://doi.org/10.3847/1538-3881/adf6db
Other links https://www.scopus.com/pages/publications/105015059147
Downloads
Searching for GEMS (Final published version)
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