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The Binary INformation from Open Clusters Using SEDs (BINOCS) Project: Reliable Photometric Mass Determinations of Binary Star Systems in Clusters

Benjamin A. Thompson, Peter M. Frinchaboy, Taylor Spoo, John Donor

2021The Astronomical Journal15 citationsDOIOpen Access PDF

Abstract

Abstract We introduce a new binary detection technique, Binary INformation from Open Clusters using SEDs (binocs) , which we show is able to determine reliable stellar multiplicity and masses over a much larger mass range than current approaches. This new technique determines accurate component masses of binary and single systems of the open clusters’ main sequence by comparing observed magnitudes from multiple photometric filters to synthetic star spectral energy distributions (SEDs), allowing us to systematically probe the binary population for low-mass stars in clusters for eight well-studied open clusters. We provide new deep, infrared photometric catalogs (1.2–8.0 μ m) for the key open clusters NGC 1960 (M36), NGC 2099 (M37), NGC 2420, and NGC 2682 (M67), using observations from NOAO/NEWFIRM and Spitzer/IRAC. Using these deep multiwavelength catalogs, the binocs method is applied to these clusters to determine accurate component masses for unresolved cluster binaries. We explore binary fractions as a function of cluster age, Galactic location, and metallicity.

Topics & Concepts

PhysicsOpen clusterAstrophysicsBinary numberStar clusterCluster (spacecraft)Photometry (optics)Binary starStarsStellar classificationInitial mass functionVisual binaryAstronomyStellar populationStellar massPopulationStar formationGalaxy clusterGalaxy groups and clustersSpectral energy distributionMain sequenceInfraredSolar massBinary systemRange (aeronautics)Stellar evolutionMass segregationEnergy (signal processing)Component (thermodynamics)Stellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchAstrophysics and Star Formation Studies
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