New spectroscopic binary companions of giant stars and updated metallicity distribution for binary systems
P.Bluhm, M.I.Jones, L.Vanzi, M.G.Soto, J.Vos, R.A. Wittenmyer,, H.Drass, J.S.Jenkins, F.Olivares, R.E.Mennickent, M.Vuckovic, P.Rojo and, C.H.F.Melo

TL;DR
This study reports 24 new spectroscopic binary companions to giant stars, constrains orbital parameters for some, analyzes their metallicity distribution, and examines the relationship between orbital period and eccentricity.
Contribution
The paper provides new binary star discoveries, detailed orbital solutions for select systems, and insights into the metallicity distribution and orbital characteristics of giant star binaries.
Findings
24 new spectroscopic binary companions discovered
Binary systems exhibit a wide range of orbital periods and eccentricities
Metallicity distribution of binary giants is flat, suggesting different formation mechanisms from planets
Abstract
We report the discovery of 24 spectroscopic binary companions to giant stars. We fully constrain the orbital solution for 6 of these systems. We cannot unambiguously derive the orbital elements for the remaining stars because the phase coverage is incomplete. Of these stars, 6 present radial velocity trends that are compatible with long-period brown dwarf companions.The orbital solutions of the 24 binary systems indicate that these giant binary systems have a wide range in orbital periods, eccentricities, and companion masses. For the binaries with restricted orbital solutions, we find a range of orbital periods of between 97-1600 days and eccentricities of between 0.1-0.4. In addition, we studied the metallicity distribution of single and binary giant stars. We computed the metallicity of a total of 395 evolved stars, 59 of wich are in binary systems. We find a flat…
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