Metallicities in M dwarfs: Investigating different determination techniques
arXiv:2111.14950 · doi:10.1051/0004-6361/202141920
Abstract
Deriving metallicities for solar-like stars follows well-established methods, but for cooler stars such as M dwarfs, the determination is much more complicated due to forests of molecular lines that are present. Several methods have been developed in recent years to determine accurate stellar parameters for these cool stars ( 4000 K). However, significant differences can be found at times when comparing metallicities for the same star derived using different methods. In this work, we determine the effective temperatures, surface gravities, and metallicities of 18 well-studied M dwarfs observed with the CARMENES high-resolution spectrograph following different approaches, including synthetic spectral fitting, analysis of pseudo-equivalent widths, and machine learning. We analyzed the discrepancies in the derived stellar parameters, including metallicity, in several analysis runs. Our goal is to minimize these discrepancies and find stellar parameters that are more consistent with the literature values. We attempted to achieve this consistency by standardizing the most commonly used components, such as wavelength ranges, synthetic model spectra, continuum normalization methods, and stellar parameters. We conclude that although such modifications work quite well for hotter main-sequence stars, they do not improve the consistency in stellar parameters for M dwarfs, leading to mean deviations of around 50-200 K in temperature and 0.1-0.3 dex in metallicity. In particular, M dwarfs are much more complex and a standardization of the aforementioned components cannot be considered as a straightforward recipe for bringing consistency to the derived parameters. Further in-depth investigations of the employed methods would be necessary in order to identify and correct for the discrepancies that remain.
accepted for publication in A&A
References in corpus (33)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- The Dartmouth Stellar Evolution Database
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- Improving PARSEC models for very low mass stars
- VOSA: Virtual Observatory SED Analyzer. An application to the Collinder 69 open cluster
- New PARSEC evolutionary tracks of massive stars at low metallicity: testing canonical stellar evolution in nearby star forming dwarf galaxies
- Spectrum radial velocity analyser (SERVAL). High-precision radial velocities and two alternative spectral indicators
- Trumpeting M Dwarfs with CONCH-SHELL: a Catalog of Nearby Cool Host-Stars for Habitable ExopLanets and Life
- The Solar Neighborhood XXXVII: The Mass-Luminosity Relation for Main Sequence M Dwarfs
- The CARMENES search for exoplanets around M dwarfs: Different roads to radii and masses of the target stars
- M dwarfs: effective temperatures, radii and metallicities
- CARMENES input catalogue of M dwarfs. I. Low-resolution spectroscopy with CAFOS
- Atomic data for the Gaia-ESO Survey
- First Results from the CHARA Array. IV. The Interferometric Radii of Low-Mass Stars
- Atmospheric Rossiter-McLaughlin effect and transmission spectroscopy of WASP-121b with ESPRESSO
- M Dwarf Metallicities and Giant Planet Occurrence: Ironing Out Uncertainties and Systematics
- The CARMENES search for exoplanets around M dwarfs. Activity indicators at visible and near-infrared wavelengths
- Metallicity of M dwarfs IV. A high-precision [Fe/H] and Teff technique from high-resolution optical spectra for M dwarfs
- The CARMENES search for exoplanets around M dwarfs -- Photospheric parameters of target stars from high-resolution spectroscopy. II. Simultaneous multiwavelength range modeling of activity insensitive lines
- An empirical calibration to estimate cool dwarf fundamental parameters from H-band spectra
- Prospecting in Ultracool Dwarfs: Measuring the Metallicities of Mid- and Late-M Dwarfs
- Stellar parameters of early M dwarfs from ratios of spectral features at optical wavelengths
- A Comparison of Stellar Elemental Abundance Techniques and Measurements
- A discontinuity in the -radius relation of M-dwarfs
- Chemical Abundances of M-dwarfs from the APOGEE Survey. I. The Exoplanet Hosting Stars Kepler-138 and Kepler-186
- Stellar Characterization of M-dwarfs from the APOGEE Survey: A Calibrator Sample for the M-dwarf Metallicities
- The CARMENES search for exoplanets around M dwarfs -- A deep learning approach to determine fundamental parameters of target stars
- M dwarf luminosity, radius, and -enrichment from -band spectral features
- The Mass-Activity relationships in M and K dwarfs. I. Stellar parameters of our sample of M and K dwarfs
- Systematic Differences in Spectroscopic Analysis of Red Giants
- Stellar atmospheric parameters of FGK-type stars from high-resolution optical and near-infrared CARMENES spectra
- Estimating , radius and luminosity of M-dwarfs using high resolution optical and NIR spectral features