Imaged sub-stellar companions: not as eccentric as they appear? The effect of an unseen inner mass on derived orbits
arXiv:1310.7427 · doi:10.1093/mnras/stt2080
Abstract
Increasing numbers of sub-stellar companions are now being discovered via direct imaging. Orbital elements for some of these objects have been derived using star--companion astrometry, and several of these appear to have eccentricities significantly greater than zero. We show that stellar motion caused by an undetected inner body may result in the companion elements derived in such a way being incorrect, which could lead to an overestimation of the eccentricity. The magnitude of this effect is quantified in several regimes and we derive the maximum eccentricity error a third body could introduce in a general form, which may be easily applied to any imaged system. Criteria for identifying systems potentially susceptible to this scenario are presented, and we find that around half of the planets/companion brown dwarfs currently imaged could be liable to these errors when their orbital elements are derived. In particular, this effect could be relevant for systems within 100 pc with companions at >50 AU, if they also harbour an unseen 10 Jupiter mass object at 10 AU. We use the Fomalhaut system as an example and show that a 10% error could be induced on the planet's eccentricity by an observationally allowed inner mass, which is similar in size to the current error from astrometry.
Accepted for publication in MNRAS
References in corpus (13)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- On the Luminosity of Young Jupiters
- The Gemini Deep Planet Survey -- GDPS
- STIS Coronagraphic Imaging of Fomalhaut: Main Belt Structure and the Orbit of Fomalhaut b
- HD 203030B: an Unusually Cool Young Sub-Stellar Companion near the L/T Transition
- Double-blind test program for astrometric planet detection with Gaia
- Forever alone? Testing single eccentric planetary systems for multiple companions
- Resolved debris disk emission around eta Tel: a young Solar System or ongoing planet formation?
- Astrometric and photometric monitoring of GQ Lup and its sub-stellar companion
- The Minimum Jeans Mass, Brown Dwarf Companion IMF, and Predictions for Detection of Y-type Dwarfs
- The very nearby M/T dwarf binary SCR 1845-6357
- Star - Planet - Debris Disk Alignment in the HD 82943 system: Is planetary system coplanarity actually the norm?
- Which Radial Velocity Exoplanets Have Undetected Outer Companions?
Cited by in corpus (9)
- Population-Level Eccentricity Distributions of Imaged Exoplanets and Brown Dwarf Companions: Dynamical Evidence for Distinct Formation Channels
- First light of the VLT planet finder SPHERE. II. The physical properties and the architecture of the young systems PZ Tel and HD 1160 revisited
- First light of the VLT planet finder SPHERE. I. Detection and characterization of the sub-stellar companion GJ 758 B
- Astrometric follow-up observations of directly imaged sub-stellar companions to young stars and brown dwarfs
- Hint of curvature in the orbital motion of the exoplanet 51 Eridani b using 3 years of VLT/SPHERE monitoring
- Constraining the orbits of sub-stellar companions imaged over short orbital arcs
- VLT/SPHERE astrometric confirmation and orbital analysis of the brown dwarf companion HR 2562 B
- Orbiting a binary: SPHERE characterisation of the HD 284149 system
- Orbital fitting of imaged planetary companions with high eccentricities and unbound orbits -- Application to Fomalhaut b and PZ Telescopii B