Orbital elements and individual component masses from joint spectroscopic and astrometric data of double-line spectroscopic binaries
arXiv:2201.04134 · doi:10.3847/1538-3881/ac478c
Abstract
We present orbital elements, orbital parallaxes and individual component masses, for fourteen spatially resolved double-line spectroscopic binaries derived doing a simultaneous fit of their visual orbit and radial velocity curve. This was done by means of a Markov Chain Monte Carlo code developed by our group, which produces posterior distribution functions and error estimates for all the parameters. Of this sample, six systems had high quality previous studies and were included as benchmarks to test our procedures, but even in these cases we could improve the previous orbits by adding recent data from our survey of southern binaries being carried out with the HRCam and ZORRO speckle cameras at the SOAR 4.1m and Gemini South 8.1m telescopes, respectively. We also give results for eight objects that did not have a published combined orbital solution, one of which did not have a visual orbit either. We could determine mass ratios with a typical uncertainty of less than 1%, mass sums with uncertainties of about 1% and individual component masses with a formal uncertainty of in the best cases. A comparison of our orbital parallaxes with available trigonometric parallaxes from Hipparcos and Gaia eDR3, shows a good correspondence; the mean value of the differences being consistent with zero within the errors of both catalogs. We also present observational HR diagrams for our sample of binaries, which in combination with isochrones from different sources allowed us to asses their evolutionary status and also the quality of their photometry.
26 pages, 8 figures. Accepted for publication in The Astronomical Journal
References in corpus (17)
- The Dartmouth Stellar Evolution Database
- The All-Sky Automated Survey for Supernovae (ASAS-SN) Light Curve Server v1.0
- A million binaries from Gaia eDR3: sample selection and validation of Gaia parallax uncertainties
- The Hipparcos-Gaia Catalog of Accelerations: Gaia EDR3 Edition
- The Solar Neighborhood XXXVII: The Mass-Luminosity Relation for Main Sequence M Dwarfs
- Reevaluating the Mass-Radius Relation for Low-Mass, Main Sequence Stars
- Implementing Primordial Binaries in Simulations of Star Cluster Formation with a Hybrid MHD and Direct N-Body Method
- Observations of Binary Stars with the Differential Speckle Survey Instrument. V. Toward an Empirical Metal-Poor Mass-Luminosity Relation
- Orbits for eighteen visual binaries and two double-line spectroscopic binaries observed with HRCAM on the CTIO SOAR 4m telescope, using a new Bayesian orbit code based on Markov Chain Monte Carlo
- New orbits based on speckle interferometry at SOAR. II
- Microlens Masses from 1-D Parallaxes and Heliocentric Proper Motions
- Observations of Binary Stars with the Differential Speckle Survey Instrument. VIII. Measures of Metal-Poor Stars and Triple Stars from 2015 to 2018
- Dynamical Masses and Stellar Evolutionary Model Predictions of M-Stars
- Masses of the components of SB2 binaries observed with Gaia. V. Accurate SB2 orbits for 10 binaries and masses of the components of 5 binaries
- Calibration of the photometric G passband for Gaia Data Release 1
- Orbits and masses of binaries from Speckle Interferometry at SOAR
- Visual binary stars with partially missing data: Introducing multiple imputation in astrometric analysis