The mass determination of TOI-519 b: a close-in giant planet transiting a metal-rich mid-M dwarf
arXiv:2304.14703 · doi:10.1093/pasj/psad031
Abstract
We report the mass determination of TOI-519 b, a transiting substellar object around a mid-M dwarf. We carried out radial velocity measurements using Subaru / InfraRed Doppler (IRD), revealing that TOI-519 b is a planet with a mass of . We also find that the host star is metal rich ( dex) and has the lowest effective temperature ( K) among all stars hosting known close-in giant planets based on the IRD spectra and mid-resolution infrared spectra obtained with NASA Infrared Telescope Facility / SpeX. The core mass of TOI-519 b inferred from a thermal evolution model ranges from to , which can be explained by both the core accretion and disk instability models as the formation origins of this planet. However, TOI-519 is in line with the emerging trend that M dwarfs with close-in giant planets tend to have high metallicity, which may indicate that they formed in the core accretion model. The system is also consistent with the potential trend that close-in giant planets around M dwarfs tend to be less massive than those around FGK dwarfs.
10 pages, 5 figures. Accepted for publication in PASJ
References in corpus (29)
- The Transiting Exoplanet Survey Satellite
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- Planet formation around stars of various masses: The snow line and the frequency of giant planets
- Tidal Evolution of Close-in Extra-Solar Planets
- A time-resolved picture of our Milky Way's early formation history
- The New Generation Planetary Population Synthesis (NGPPS). IV. Planetary systems around low-mass stars
- HATS-6b: A Warm Saturn Transiting an Early M Dwarf Star, and a Set of Empirical Relations for Characterizing K and M Dwarf Planet Hosts
- A giant exoplanet orbiting a very low-mass star challenges planet formation models
- Heavy metal rules. I. Exoplanet incidence and metallicity
- A Jupiter-like Planet Orbiting the Nearby M Dwarf GJ832
- A Systematic Study of the Final Masses of Gas Giant Planets
- HADES RV Programme with HARPS-N at TNG XII. The abundance signature of M dwarf stars with planets
- Limits on the Spin-Orbit Angle and Atmospheric Escape for the 22 Myr-old Planet AU Mic b
- Precision radial velocity measurements by the forward-modeling technique in the near-infrared
- Calibration of the Halpha Age-Activity relation for M dwarfs
- Tests of In-Situ Formation Scenarios for Compact Multiplanet Systems
- Planet formation around M dwarfs via disc instability: Fragmentation conditions and protoplanet properties
- Evidence for Spin-orbit Alignment in the TRAPPIST-1 System
- TOI-5205 b: A Short-period Jovian Planet Transiting a Mid-M Dwarf
- Investigating the Planet-Metallicity Correlation for Hot Jupiters
- HATS-74Ab, HATS-75b, HATS-76b and HATS-77b: Four Transiting Giant Planets around K and M Dwarfs
- TOI-530b: A giant planet transiting an M dwarf detected by TESS
- TOI-3714 b and TOI-3629 b: Two gas giants transiting M dwarfs confirmed with HPF and NEID
- Elemental Abundances of M Dwarfs Based on High-Resolution Near-Infrared Spectra: Verification by Binary Systems
- The TIME Table: Rotation and Ages of Cool Exoplanet Host Stars
- Elemental abundances of nearby M dwarfs based on high-resolution near-infrared spectra obtained by the Subaru/IRD survey: Proof of concept
- TOI-3235 b: a transiting giant planet around an M4 dwarf star
- TOI-519 b: a short-period substellar object around an M dwarf validated using multicolour photometry and phase curve analysis
- A Super-Earth Orbiting Near the Inner Edge of the Habitable Zone around the M4.5-dwarf Ross 508
Cited by in corpus (8)
- Searching for Giant Exoplanets around M-dwarf Stars (GEMS) I: Survey Motivation
- Metallicity Dependence of Giant Planets around M Dwarfs
- A massive hot Jupiter orbiting a metal-rich early-M star discovered in the TESS full frame images
- TOI-5344 b: A Saturn-like planet orbiting a super-Solar metallicity M0 dwarf
- MANGOS II: Five new giant planets orbiting low-mass stars
- Homogeneous search for spot transits in Kepler and TESS photometry of K M-type main-sequence stars
- Warm Jupiters around M-dwarfs are great opportunities for extensive chemical, cloud and haze characterisation with JWST
- Searching for GEMS: TOI-5916 b & TOI-6158 b are two Saturn-density planets orbiting M2 dwarfs