The Gaia-ESO Survey: Spectroscopic-asteroseismic analysis of K2 stars in Gaia-ESO
C. C. Worley (1), P. Jofre (2), B. Rendle (3), A. Miglio (3), and L. Magrini (4), D. Feuillet (5,12), A. Gavel (6), R. Smiljanic, (7), K. Lind (5,6,21), A. Korn (6), G. Gilmore (1), S. Randich, (4), A. Hourihane (1), A. Gonneau (1), P. Francois (8), J. Lewis, (1), G. Sacco (4)

TL;DR
This study combines spectroscopic and asteroseismic data for 90 K2 red giants to produce a high-quality, self-consistent stellar parameter catalogue, enhancing Galactic archaeology research.
Contribution
It presents a novel iterative method to derive consistent stellar parameters by integrating spectroscopy and asteroseismology for K2 stars, validated with Gaia data.
Findings
Achieved consistent stellar parameters with one iteration.
Identified an offset between seismic and Gaia parallax-based log(g).
Provided detailed chemical abundances and binary indicators.
Abstract
The extensive stellar spectroscopic datasets that are available for studies in Galactic Archeaology thanks to, for example, the Gaia-ESO Survey, now benefit from having a significant number of targets that overlap with asteroseismology projects such as Kepler, K2 and CoRoT. Combining the measurements from spectroscopy and asteroseismology allows us to attain greater accuracy with regard to the stellar parameters needed to characterise the stellar populations of the Milky Way. The aim of this Gaia-ESO Survey special project is to produce a catalogue of self-consistent stellar parameters by combining measurements from high-resolution spectroscopy and precision asteroseismology. We carried out an iterative analysis of 90 K2@Gaia-ESO red giants. The spectroscopic values of Teff were used as input in the seismic analysis to obtain log(g) values. The seismic estimates of log(g) were then used…
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