The eclipse of the V773 Tau B circumbinary disk
arXiv:2207.05575 · doi:10.1051/0004-6361/202243441
Abstract
A deep (~70%) and extended (~150 days) eclipse was seen towards the young multiple stellar system V773 Tau in 2010. We interpret it as due to the passage of a circumbinary disk around the B components moving in front of the A components. Our aim is to characterise the orientation and structure of the disk, to refine the orbits of the subcomponents, and to predict when the next eclipse will occur. We combine the photometry from several ground based surveys, construct a model for the light curve of the eclipse, and use high angular resolution imaging to refine the orbits of the three components of the system, A, B and C. Frequency analysis of the light curves, including from the TESS satellite, enables characterisation of the rotational periods of the Aa and Ab stars. A toy model of the circumbinary disk shows that it extends out to approximately 5 au around the B binary and has an inclination of 73 degrees with respect to the orbital plane of AB, where the lower bound of the radius of the disk is constrained by the geometry of the AB orbit and the upper bound is set by the stability of the disk. We identify several frequencies in the photometric data that we attribute to rotational modulation of the Aa and Ab stellar companions. We produce the first determination of the orbit of the more distant C component around the AB system and limit its inclination to 93 degrees. The high inclination and large diameter of the disk, together with the match from theory suggest that B is an almost equal mass, moderately eccentric binary. We identify the rotational periods of the Aa and Ab stars, identify a third frequency in the light curve that we attribute to the orbital period of the stars in the B binary. We predict that the next eclipse will be around 2037, during which both detailed photometric and spectroscopic monitoring will characterise the disk in greater detail.
13 pages, 15 figures, 5 tables, A&A in press. All data and reduction scripts available at https://github.com/mkenworthy/V773TauBdisk
References in corpus (23)
- The Transiting Exoplanet Survey Satellite
- Theory of Star Formation
- The All-Sky Automated Survey for Supernovae (ASAS-SN) Light Curve Server v1.0
- On the diversity and statistical properties of protostellar discs
- orbitize!: A Comprehensive Orbit-fitting Software Package for the High-contrast Imaging Community
- The Kozai-Lidov Mechanism in Hydrodynamical Disks
- Misaligned Disks in the Binary Protostar IRS 43
- Misaligned gas discs around eccentric black-hole binaries and implications for the final-parsec problem
- Polar alignment of a protoplanetary disk around an eccentric binary
- A circumbinary protoplanetary disc in a polar configuration
- Inclination Evolution of Protoplanetary Disks Around Eccentric Binaries
- Tidal Torques on Misaligned Disks in Binary Systems
- High Inclination Planets in Multistellar Systems
- Linear Analysis of the Evolution of Nearly Polar Low Mass Circumbinary Discs
- The Kozai-Lidov Mechanism in Hydrodynamical Disks. II. Effects of binary and disk parameters
- Dynamical Masses for Pre-Main Sequence Stars: A Preliminary Physical Orbit for V773 Tau A
- Polar planets around highly eccentric binaries are the most stable
- On the stability and collisions in triple stellar systems
- The HD 98800 quadruple pre-main sequence system. Towards full orbital characterisation using long-baseline infrared interferometry
- Formation of polar terrestrial circumbinary planets
- New light on the old problem of lithium pre--MS depletion: models with 2D RHD convection
- Fragmentation of Kozai-Lidov Disks
- Circumbinary disk evolution in the presence of an outer companion star
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- Orbital stability of two circumbinary planets around misaligned eccentric binaries