A homogeneous spectroscopic analysis of a Kepler legacy sample of dwarfs for gravity-mode asteroseismology
arXiv:2104.04521 · doi:10.1051/0004-6361/202140466
Abstract
Asteroseismic modelling of the internal structure of main-sequence stars born with a convective core has so far been based on homogeneous analyses of space photometric Kepler light curves of 4 years duration, to which most often incomplete inhomogeneously deduced spectroscopic information was added to break degeneracies. We composed a sample of 111 dwarf gravity-mode pulsators observed by the Kepler space telescope whose light curves allowed for determination of their near-core rotation rates. For this sample we assembled HERMES high-resolution optical spectroscopy at the 1.2-m Mercator telescope. Our spectroscopic information offers additional observational input to also model the envelope layers of these non-radially pulsating dwarfs. We determined stellar parameters and surface abundances in a homogeneous way from atmospheric analysis with spectrum normalisation based on a new machine learning tool. Our results suggest a systematic overestimation of [M/H] in the literature for the studied F-type dwarfs, presumably due to normalisation limitations caused by the dense line spectrum of these rotating stars. CNO-surface abundances were found to be uncorrelated with the rotation properties of the F-type stars. For the B-type stars, we find a hint of deep mixing from C and O abundance ratios; N abundances have too large uncertainties to reveal a correlation with the rotation of the stars. Our spectroscopic stellar parameters and abundance determinations allow for future joint spectroscopic, astrometric (Gaia), and asteroseismic modelling of this legacy sample of gravity-mode pulsators, with the aim to improve our understanding of transport processes in the core-hydrogen burning phase of stellar evolution.
Accepted for publication in Astronomy and Astrophysics
References in corpus (42)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Pre-Supernova Evolution of Massive Single and Binary Stars
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Standing on the shoulders of Dwarfs: the Kepler asteroseismic LEGACY sample II - radii, masses, and ages
- Toward Complete Statistics of Massive Binary Stars: Penultimate Results from the Cygnus OB2 Radial Velocity Survey
- The VLT-FLAMES survey of massive stars: constraints on stellar evolution from the chemical compositions of rapidly rotating Galactic and Magellanic Cloud B-type stars
- Asteroseismic measurement of surface-to-core rotation in a main sequence A star, KIC 11145123
- The VLT-FLAMES survey of massive stars: rotation and nitrogen enrichment as the key to understanding massive star evolution
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- The interior rotation of a sample of gamma Doradus stars from ensemble modelling of their gravity mode period spacings
- Asteroseismic measurement of slow, nearly-uniform surface-to-core rotation in the main sequence F star KIC 9244992
- Asteroseismology of solar-type stars
- Asteroseismology for "à la carte" stellar age-dating and weighing: Age and mass of the CoRoT exoplanet host HD 52265
- Signatures of internal rotation discovered in the Kepler data of five slowly pulsating B stars
- The IACOB project: III. New observational clues to understand macroturbulent broadening in massive O- and B-type stars
- Abundances in the Local Region II: F, G and K Dwarfs and Subgiants
- A new asteroseismic diagnostic for internal rotation in Doradus stars
- Activity indicators and stellar parameters of the Kepler targets. An application of the ROTFIT pipeline to LAMOST-Kepler stellar spectra
- Nitrogen enrichment, boron depletion and magnetic fields in slowly-rotating B-type dwarfs
- Spectroscopic survey of Kepler stars. I. HERMES/Mercator observations of A- and F-type stars
- Gravito-inertial and pressure modes detected in the B3 IV CoRoT target HD 43317
- Hydrogen and helium line formation in OB dwarfs and giants. A hybrid non-LTE approach
- Finding binaries from phase modulation of pulsating stars with Kepler: V. Orbital parameters, with eccentricity and mass-ratio distributions of 341 new binaries
- The MiMeS Survey of Magnetism in Massive Stars: CNO surface abundances of Galactic O stars
- Evolution of surface CNO abundances in massive stars
- Asteroseismic masses, ages, and core properties of Doradus stars using gravito-inertial dipole modes and spectroscopy
- The role of turbulent pressure as a coherent pulsational driving mechanism: the case of the delta Scuti star HD 187547
- A spectroscopic study of southern (candidate) gamma Doradus stars. II. Detailed abundance analysis and fundamental parameters
- Fundamental Parameters of Main-Sequence Stars in an Instant with Machine Learning
- The interior angular momentum of core hydrogen burning stars from gravity-mode oscillations
- Chemical composition of A and F dwarf members of the Coma Berenices open cluster
- Testing the chemical tagging technique with open clusters
- The puzzling new class of variable stars in NGC 3766 : old friend pulsators?
- Recipes for bolometric corrections and Gaia luminosities of B-type stars: Application to an asteroseismic sample
- Asteroseismic modeling of gravity modes in slowly rotating A/F stars with radiative levitation
- A seismic scaling relation for stellar age
- Convective boundary mixing in low- and intermediate-mass stars I. Core properties from pressure-mode asteroseismology
- Spectroscopic survey of Kepler stars. II. FIES/NOT observations of A- and F-type stars
- A seismic scaling relation for stellar age II: The red giant branch
- Stellar Parameters for Pulsating B Star Candidates in the Kepler Field
- Mixing of CNO-cycled matter in massive stars
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- Gaia Data Release 3: Pulsations in main sequence OBAF-type stars
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- Astrophysical properties of 15062 Gaia DR3 gravity-mode pulsators: pulsation amplitudes, rotation, and spectral line broadening
- Predictions for gravity-mode periods and surface abundances in intermediate-mass dwarfs from shear mixing and radiative levitation
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- A Concise Treatise on Converting Stellar Mass Fractions to Abundances to Molar Ratios
- Internal rotation and buoyancy travel time of 60 gamma Doradus stars from uninterrupted TESS light curves spanning 352 days
- Calibrating angular momentum transport in intermediate-mass stars from gravity-mode asteroseismology
- Analysis of high-resolution FEROS spectroscopy for a sample of variable B-type stars assembled from TESS photometry
- Gaia/GSP-spec spectroscopic properties of gamma Doradus pulsators
- In search of gravity mode signatures in main sequence solar-type stars observed by Kepler
- Calibrating chemical mixing induced by internal gravity waves based on hydrodynamical simulations; The chemical evolution of OB-type stars
- KIC 4150611: A quadruply eclipsing heptuple star system with a g-mode period-spacing pattern Asteroseismic modelling of the g-mode period-spacing pattern
- A hybrid SLAM-Payne framework for atmospheric parameter and abundance determination of early-type Stars from LAMOST DR9 low-resolution Spectra
- Zeta-Payne: a fully automated spectrum analysis algorithm for the Milky Way Mapper program of the SDSS-V survey
- Towards a systematic treatment of observational uncertainties in forward asteroseismic modelling of gravity-mode pulsators