The GAPS Programme with HARPS-N at TNG. XXXV. Fundamental properties of transiting exoplanet host stars
K. Biazzo, V. D'Orazi, S. Desidera, D. Turrini, S. Benatti, R., Gratton, L. Magrini, A. Sozzetti, M. Baratella, A. S. Bonomo, F. Borsa, R., Claudi, E. Covino, M. Damasso, M. P. Di Mauro, A. F. Lanza, A. Maggio, L., Malavolta, J. Maldonado, F. Marzari, G. Micela, E. Poretti

TL;DR
This study precisely characterizes 27 transiting exoplanet host stars, analyzing their stellar parameters, chemical abundances, and kinematics to better understand the relationship between stellar and planetary properties.
Contribution
It provides a homogeneous and detailed chemical and physical analysis of host stars, including ages derived from elemental ratios, and explores links between stellar composition and planetary characteristics.
Findings
Stellar parameters range from 4400-6700 K in temperature.
Most stars have [Fe/H] between -0.3 and 0.4 dex.
Higher density planets tend to orbit metal-rich stars.
Abstract
Exoplanetary properties depend on stellar properties: to know the planet with accuracy and precision it is necessary to know the star as accurately and precisely as possible. Our immediate aim is to characterize in a homogeneous and accurate way a sample of 27 transiting planet-hosting stars observed within the GAPS program. We determined stellar parameters (effective temperature, surface gravity, rotational velocity) and abundances of 26 elements (Li,C,N,O,Na,Mg,Al,Si,S,Ca,Sc,Ti,V,Cr,Fe,Mn,Co,Ni,Cu,Zn,Y,Zr,Ba,La,Nd,Eu). Our study is based on high-resolution HARPS-N@TNG and FEROS@ESO spectra and uniform techniques. We derived kinematic properties from Gaia data and estimated for the first time in exoplanet host stars ages using elemental ratios as chemical clocks. Teff of our stars is of 4400-6700 K, while [Fe/H] is within -0.3 and 0.4 dex. Lithium is present in 7 stars. [X/H] and…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Scientific Research and Discoveries
