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.
Formation of close binaries by disc fragmentation and migration, and its statistical modeling
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Joint statistics of periods and mass ratios of close binaries and its dependence on primary mass can be explained by assuming that seed binary companions are formed by disc fragmentation at random intervals during assemblage of stellar mass and migrate inwards as they accrete from the circumbinary disk. A toy model based on simple prescriptions for the companion growth and migration reproduces such aspects of close solar-mass binaries as the distribution of binary periods P, the brown dwarf desert at short P, the nearly uniform distribution of mass ratios, and a population of equal-mass binaries (twins) that decreases linearly in frequency with logP. For massive stars, the model predicts a large fraction of early mergers, a distribution of logP with a negative slope, and a mass-ratio distribution that is also uniform but with a substantially reduced twin fraction. By treating disc fragmentation as a stochastic process, we also reproduce the observed properties of compact triples. Success of our toy model suggests that most close binaries and compact triples indeed formed by disc fragmentation followed by accretion-driven inward migration.
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Spectroscopic Binary Detection as Agent-Callable Tools: Detecting 40,000+ Main-Sequence Binary Candidates from SDSS DR19 APOGEE Spectra
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.