Deconvolving the HD 81809 binary: rotational and activity evidence for a subgiant with a Sun-like cycle
arXiv:1807.10870 · doi:10.3847/1538-4357/aadf86
Abstract
HD 81809 has one of the highest quality activity cycles from the sample of stars synoptically observed in the Mount Wilson Observatory HK Project. However, this object is in fact a binary system, raising the question as to which of the components is responsible for the observed cyclic activity and what are the properties of that active component. The Hipparcos spacecraft obtained resolved two-color photometry for this system that indicates that both components are near the solar temperature. Combined with the precise Gaia parallax and empirical bolometric corrections we derive component luminosities of L_A = 5.8 +/- 0.3 Lsun and L_B = 1.025 +/- 0.055 Lsun, and radii R_A = 2.42 +/- 0.08 Rsun and R_B = 1.04 +/- 0.04 Rsun, confirming that the primary component is a subgiant. We perform an independent estimate of the rotation period of the A component based on vsini and find that it agrees with the 40.2 d period previously measured from the Ca HK time series. We explore plausible scenarios for the deconvolved S-index and find that a cycling A component would have an activity level within the bounds of ensemble activity-rotation trends, while a cycling B component likely does not. Based on the available rotation and activity evidence, we find the most likely characterization of the system is a subgiant primary component responsible for the smooth cyclic behavior in Ca HK with log(R'_HK) ~ -4.89, while the secondary component has relatively flat activity at log(R'_HK) ~ -5.02.
17 pages, 6 figures, 3 tables, submitted to ApJ
References in corpus (12)
- The NumPy array: a structure for efficient numerical computation
- The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package
- The Gaia mission
- Binary companions of evolved stars in APOGEE DR14: Search method and catalog of ~5,000 companions
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- The Mount Wilson Observatory S-index of the Sun
- Sun-as-a-Star Spectrum Variations 1974-2006
- The variability of Sun-like stars: reproducing observed photometric trends
- The Turbulent Origin of Outflow and Spin Misalignment in Multiple Star Systems
- Magnetically controlled stellar differential rotation near the transition from solar to anti-solar profiles
- Enhanced stellar activity for slow antisolar differential rotation?
- Fifteen years in the high-energy life of the solar-type star HD 81809. XMM-Newton observations of a stellar activity cycle
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- Testing the Limits of Precise Subgiant Characterization with APOGEE and Gaia: Opening a Window to Unprecedented Astrophysical Studies
- Luminaries in the Sky: The TESS Legacy Sample of Bright Stars. I. Asteroseismic detections in naked-eye main-sequence and sub-giant solar-like oscillators
- The Dependence of Stellar Activity Cycles on Effective Temperature
- TESS asteroseismology of Hydri: a subgiant with a born-again dynamo
- Magnetic braking and dynamo evolution of Hydri
- Magnetic field evolution in solar-type stars