Асосий контентга ўтиш
Мақола

Characterizing six seismic solar analogs observed by <i>Kepler</i> , K2, and HERMES

R. A. GarcíaCEA Paris-SaclayS. MathurUniversidad de La Laguna (ULL), Departamento de AstrofísicaG. T. HookwaySchool of Physics and Astronomy, University of BirminghamD. Godoy-RiveraInstituto de Astrofísica de Canarias (IAC)T. MasseronInstituto de Astrofísica de Canarias (IAC)J. BétriseyDepartment of Physics and Astronomy, Uppsala UniversityG. BuldgenSTAR Institute, Université de LiègeC. LindsayDepartment of Astronomy, Yale UniversityT.S. MetcalfeCenter for Solar-Stellar Connections, WDRCO. J. ScuttSchool of Physics and Astronomy, University of BirminghamA. StokholmSchool of Physics and Astronomy, University of BirminghamP. G. BeckUniversidad de La Laguna (ULL), Departamento de AstrofísicaO. BenomarCenter for Space Science, New York University Abu DhabiG. R. DaviesSchool of Physics and Astronomy, University of BirminghamA. JiménezInstituto de Astrofísica de Canarias (IAC)J. MercInstituto de Astrofísica de Canarias (IAC)M. B. NielsenSchool of Physics and Astronomy, University of BirminghamE. PanetierAstrophysique, Instrumentation et ModélisationF. Pérez HernándezUniversidad de La Laguna (ULL), Departamento de AstrofísicaL. BorgUniversité Paris-Saclay, Université Paris Cité, CEA, CNRS, AIMS. N. BretonINAF – Osservatorio Astrofisico di CataniaL. DebackerCEA Paris-SaclayA. EscorzaUniversidad de La Laguna (ULL), Departamento de AstrofísicaD. H. GrossmannInstituto de Astrofísica de Canarias (IAC)A. HamyUniversité Paris-SaclayB. LiagreInstituto de Astrofísica de CanariasM. N. LundNetherlands Institute for Radio AstronomyS. MathisUniversité Paris CitéD.B. PalakkatharappilCEA Paris-SaclayÂ. R. G. SantosCEA Paris-SaclayV. DelsantiUniversidad de La Laguna (ULL), Departamento de AstrofísicaL. González-CuestaInstituto de Astrofísica de Canarias (IAC)V. FoxCommissariat à l'Énergie Atomique et aux Énergies AlternativesN. ProustCommissariat à l'Énergie Atomique et aux Énergies Alternatives
2026en
ABI

Аннотация

Solar analogs–stars that closely match the fundamental properties of the Sun–provide key benchmarks for testing stellar structure and evolution across different ages and activity levels. Their detailed characterization helps place the Sun into context within the broader population of solar-like stars. This study presents the characterization of six seismic solar analogs observed by the NASA Kepler and K2 missions. Combining asteroseismic constraints from space-based photometry with high-resolution spectroscopy and Gaia astrometry, we derived their fundamental parameters and assessed their resemblance to the Sun. Global seismic properties and individual oscillation modes were extracted from the photometric light curves, while atmospheric parameters were obtained from data collected by the High-Efficiency and High-Resolution Mercator Echelle Spectrograph (HERMES) at the Mercator telescope. Stellar modeling using seven independent stellar evolution codes yielded consistent masses, radii, and ages. These stars have masses between 0.91 and 1.04 M ⊙ , radii between 0.95 and 1.08 R ⊙ , and ages from about 1.8–9.1 Gyr, with typical systematic uncertainties of ±0.02 M ⊙ , ±0.01 R ⊙ , and ±0.7 Gyr, respectively. One star, EPIC 206064678, exhibits properties very similar to those of the Sun, with M = 1.016 ± 0.033 M ⊙ , R = 0.990 ± 0.011 R ⊙ , and an age of 5.40 ± 0.12 Gyr. It can therefore be considered a close solar twin, although it is slightly older and more metal-rich (0.25 ± 0.07 dex). Four targets display binarity signatures and all exhibit very low chromospheric activity. This work broadens the sample of well-characterized seismic solar analogs toward a larger sample of metallicities and ages, providing new references for comparative stellar studies and future asteroseismic investigations.

Ҳали таржима қилинмаган

Идентификаторлар

Иқтибослар ва манбалар