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Binary companions of evolved stars in APOGEE DR14: Search method and catalog of ~5,000 companions

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arxiv 1804.04662 v1 pith:BYMMFI2U submitted 2018-04-12 astro-ph.SR

classification astro-ph.SR
keywords companionsstarsorbitalcatalogcompanionposteriorpropertiesstellar
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Multi-epoch radial velocity measurements of stars can be used to identify stellar, sub-stellar, and planetary-mass companions. Even a small number of observation epochs can be informative about companions, though there can be multiple qualitatively different orbital solutions that fit the data. We have custom-built a Monte Carlo sampler (The Joker) that delivers reliable (and often highly multi-modal) posterior samplings for companion orbital parameters given sparse radial-velocity data. Here we use The Joker to perform a search for companions to 96,231 red-giant stars observed in the APOGEE survey (DR14) with $\geq 3$ spectroscopic epochs. We select stars with probable companions by making a cut on our posterior belief about the amplitude of the stellar radial-velocity variation induced by the orbit. We provide (1) a catalog of 320 companions for which the stellar companion properties can be confidently determined, (2) a catalog of 4,898 stars that likely have companions, but would require more observations to uniquely determine the orbital properties, and (3) posterior samplings for the full orbital parameters for all stars in the parent sample. We show the characteristics of systems with confidently determined companion properties and highlight interesting systems with candidate compact object companions.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Spectroscopic Binary Detection as Agent-Callable Tools: Detecting 40,000+ Main-Sequence Binary Candidates from SDSS DR19 APOGEE Spectra

    astro-ph.SR 2026-08 conditional novelty 7.0 of 10

    The authors apply El-Badry's binary decomposition via agent-callable tools to APOGEE DR19, flagging 41,466 SB2 candidates with about 40% estimated contamination, and measuring no eccentricity excess for close twins.

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