Deep Search for a scattered light dust halo around Vega with the Hubble Space Telescope
arXiv:2410.24042 · doi:10.3847/1538-3881/ad67cb
Abstract
We present a provisory scattered light detection of the Vega debris disk using deep Hubble Space Telescope coronagraphy (PID 16666). At only 7.7 parsecs, Vega is immensely important in debris disk studies both for its prominence and also because it allows the highest physical resolution among all debris systems relative to temperature zones around the star. We employ the STIS coronagraph's widest wedge position and classical Reference Differential Imaging to achieve among the lowest surface brightness sensitivities to date () at wide separations using 32 orbits in Cycle 29. We detect a halo extending from the inner edge of our effective inner working angle at out to the photon noise floor at (80 - 230 au). The face-on orientation of the system and the lack of a perfectly color-matched PSF star have provided significant challenges to the reductions, particularly regarding artifacts from the imperfect color matching. However, we find that a halo of small dust grains provides the best explanation for the observed signal. Unlike Fomalhaut (a close twin to Vega in luminosity, distance, and age), there is no clear distinction in scattered light between the parent planetesimal belt observed with ALMA and the extended dust halo. These HST observations complement JWST GTO Cycle 1 observations of the system with NIRCam and MIRI.
References in corpus (19)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Debris Disk Evolution Around A Stars
- NIRCam Performance on JWST In Flight
- Probing for Exoplanets Hiding in Dusty Debris Disks: Disk Imaging, Characterization, and Exploration with HST/STIS Multi-Roll Coronagraphy
- Circumstellar material in the Vega inner system revealed by CHARA/FLUOR
- Near-infrared scattered light properties of the HR4796A dust ring: a measured scattering phase function from 13.6deg to 166.6deg
- A Complete ALMA Map of the Fomalhaut Debris Disk
- Milky Way Mid-Infrared Spitzer Spectroscopic Extinction Curves: Continuum and Silicate Features
- First scattered light images of debris disks around HD 53143 and HD 139664
- The effect of dust composition and shape on radiation-pressure forces and blowout sizes of particles in debris disks
- Vega's hot dust from icy planetesimals scattered inward by an outward-migrating planetary system
- Spatially resolved imaging of the inner Fomalhaut disk using JWST/MIRI
- Inner mean-motion resonances with eccentric planets: A possible origin for exozodiacal dust clouds
- Is there more than meets the eye? Presence and role of submicron grains in debris discs
- Dust Populations in the Iconic Vega Planetary System Resolved by ALMA
- Debris Disk Color with the Hubble Space Telescope
- A decade of radial-velocity monitoring of Vega and new limits on the presence of planets
- A re-investigation of debris disc halos
- Hiding Dust Around Eridani