The Gaia-ESO Survey: double, triple and quadruple-line spectroscopic binary candidates
T. Merle, S. Van Eck, A. Jorissen, M. Van der Swaelmen, T. Masseron,, T. Zwitter, D. Hatzidimitriou, A. Klutsch, D. Pourbaix, R. Blomme, C. C., Worley, G. Sacco, J. Lewis, C. Abia, G. Traven, R. Sordo, A. Bragaglia, R., Smiljanic, E. Pancino, F. Damiani, A. Hourihane, G. Gilmore

TL;DR
This paper presents a new automated method for detecting spectroscopic multiple star systems in the Gaia-ESO Survey, leading to the discovery of numerous new binary and multiple star candidates, including a quadruple system.
Contribution
Developed a derivative-based cross-correlation function method for automatic detection of spectroscopic binaries in large survey data, identifying many new multiple star systems.
Findings
Detected 354 spectroscopic binary candidates, mostly new discoveries.
Identified a quadruple star system in the open cluster IC 2391.
Computed orbital solutions for two previously unknown binaries.
Abstract
The Gaia-ESO Survey (GES) is a large spectroscopic survey that provides a unique opportunity to study the distribution of spectroscopic multiple systems among different populations of the Galaxy. We aim at detecting binarity/multiplicity for stars targeted by the GES from the analysis of the cross-correlation functions (CCFs) of the GES spectra with spectral templates. We develop a method based on the computation of the CCF successive derivatives to detect multiple peaks and determine their radial velocities, even when the peaks are strongly blended. The parameters of the detection of extrema (DOE) code have been optimized for each GES GIRAFFE and UVES setup to maximize detection. This code therefore allows to automatically detect multiple line spectroscopic binaries (SBn, n>1). We apply this method on the fourth GES internal data release and detect 354 SBn candidates (342 SB2, 11 SB3…
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