A decade of radial-velocity monitoring of Vega and new limits on the presence of planets
arXiv:2101.08801 · doi:10.3847/1538-3881/abdec8
Abstract
We present an analysis of 1524 spectra of Vega spanning 10 years, in which we search for periodic radial velocity variations. A signal with a periodicity of 0.676 days and a semi-amplitude of ~10 m/s is consistent with the rotation period measured over much shorter time spans by previous spectroscopic and spectropolarimetric studies, confirming the presence of surface features on this A0 star. The timescale of evolution of these features can provide insight into the mechanism that sustains the weak magnetic fields in normal A type stars. Modeling the radial velocities with a Gaussian process using a quasi-periodic kernel suggests that the characteristic spot evolution timescale is ~180 days, though we cannot exclude the possibility that it is much longer. Such long timescales may indicate the presence of failed fossil magnetic fields on Vega. TESS data reveal Vega's photometric rotational modulation for the first time, with a total amplitude of only 10 ppm, and a comparison of the spectroscopic and photometric amplitudes suggest the surface features may be dominated by bright plages rather than dark spots. For the shortest orbital periods, transit and radial velocity injection recovery tests exclude the presence of transiting planets larger than 2 Earth radii and most non-transiting giant planets. At long periods, we combine our radial velocities with direct imaging from the literature to produce detection limits for Vegan planets and brown dwarfs out to distances of 15 au. Finally, we detect a candidate radial velocity signal with a period of 2.43 days and a semi-amplitude of 6 m/s. If caused by an orbiting companion, its minimum mass would be ~20 Earth masses; because of Vega's pole-on orientation, this would correspond to a Jovian planet if the orbit is aligned with the stellar spin. We discuss the prospects for confirmation of this candidate planet.
17 pages, 8 figures, 5 tables; accepted for publication in The Astronomical Journal
References in corpus (24)
- Array Programming with NumPy
- The Transiting Exoplanet Survey Satellite
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- The generalised Lomb-Scargle periodogram. A new formalism for the floating-mean and Keplerian periodograms
- Planets and Stellar Activity: Hide and Seek in the CoRoT-7 system
- Radial velocity planets de-aliased. A new, short period for Super-Earth 55 Cnc e
- emcee v3: A Python ensemble sampling toolkit for affine-invariant MCMC
- A giant planet undergoing extreme ultraviolet irradiation by its hot massive-star host
- Transit Least Squares: Optimized transit detection algorithm to search for periodic transits of small planets
- Inferring probabilistic stellar rotation periods using Gaussian processes
- Circumstellar material in the Vega inner system revealed by CHARA/FLUOR
- SONS: The JCMT legacy survey of debris discs in the submillimetre
- Ionized calcium in the atmospheres of two ultra-hot exoplanets WASP-33b and KELT-9b
- KELT-17b: A hot-Jupiter transiting an A-star in a misaligned orbit detected with Doppler tomography
- Vega's hot dust from icy planetesimals scattered inward by an outward-migrating planetary system
- KELT-9 b's Asymmetric TESS Transit Caused by Rapid Stellar Rotation and Spin-Orbit Misalignment
- High-contrast Imaging with Spitzer: Deep Observations of Vega, Fomalhaut, and epsilon Eridani
- Deep L' and M-band Imaging for Planets Around Vega and epsilon Eridani
- Images of Vega Dust Ring at 350 and 450 microns: New Clues to the Trapping of Multiple-Sized Dust Particles in Planetary Resonances
- Gravity-Darkening Analysis of Misaligned Hot Jupiter MASCARA-4 b
- Dust Populations in the Iconic Vega Planetary System Resolved by ALMA
- No significant correlation between radial velocity planet presence and debris disc properties
- Clearing residual planetesimals by sweeping secular resonances in transitional disks: a lone-planet scenario for the wide gaps in debris disks around Vega and Fomalhaut
- Spot distribution and fast surface evolution on Vega
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- The Direct Mid-Infrared Detectability of Habitable-zone Exoplanets Around Nearby Stars
- Searching for Planets Orbiting Vega with the James Webb Space Telescope
- Planet Search with the Keck/NIRC2 Vortex Coronagraph in Ms-band for Vega
- Deep Search for a scattered light dust halo around Vega with the Hubble Space Telescope
- Coronal and chromospheric emission in A-type stars