A PR drag origin for the Fomalhaut disk's pervasive inner dust: constraints on collisional strengths, icy composition, and embedded planets
arXiv:2503.18127 · doi:10.1093/mnras/staf494
Abstract
Recent JWST observations of the Fomalhaut debris disk have revealed a significant abundance of dust interior to the outer planetesimal belt, raising questions about its origin and maintenance. In this study, we apply an analytical model to the Fomalhaut system, that simulates the dust distribution interior to a planetesimal belt, as collisional fragments across a range of sizes are dragged inward under Poynting-Robertson (PR) drag. We generate spectral energy distributions and synthetic JWST/MIRI images of the model disks, and perform an extensive grid search for particle parameters -- pertaining to composition and collisional strength -- that best match the observations. We find that a sound fit can be found for particle properties that involve a substantial water ice component, around 50%--80% by total volume, and a catastrophic disruption threshold, , at a particle size of um of 2--4erg/g. Based on the expected dynamical depletion of migrating dust by an intervening planet we discount planets with masses beyond au in the extended disk, though a planet shepherding the inner edge of the outer belt of up to is reconcilable with the PR-drag-maintained disk scenario, contingent upon higher collisional strengths. These results indicate that PR drag transport from the outer belt alone can account for the high interior dust contents seen in the Fomalhaut system, which may thus constitute a common phenomenon in other belt-bearing systems. This establishes a framework for interpreting mid-planetary system dust around other stars, with our results for Fomalhaut providing a valuable calibration of the models.
References in corpus (28)
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- Long-Term Collisional Evolution of Debris Disks
- Full Numerical Simulations of Catastrophic Small Body Collisions
- Do Two Temperature Debris Disks Have Multiple Belts?
- SONS: The JCMT legacy survey of debris discs in the submillimetre
- Herschel images of Fomalhaut. An extrasolar Kuiper Belt at the height of its dynamical activity
- A Complete ALMA Map of the Fomalhaut Debris Disk
- Survival of icy grains in debris discs. The role of photosputtering
- ALMA observations of the Corvi debris disc: inward scattering of CO-rich exocomets by a chain of 3-30 M planets?
- The effect of dust composition and shape on radiation-pressure forces and blowout sizes of particles in debris disks
- 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
- A statistically significant lack of debris discs in medium separation binary systems
- New HST data and modeling reveal a massive planetesimal collision around Fomalhaut
- Near-infrared emission from sublimating dust in collisionally active debris disks
- Warm exo-Zodi from cool exo-Kuiper belts: the significance of P-R drag and the inference of intervening planets
- A Possible Icy Kuiper Belt around HD 181327
- Exo-zodi modelling for the Large Binocular Telescope Interferometer
- The unexpected narrowness of eccentric debris rings: a sign of eccentricity during the protoplanetary disc phase
- Imaging detection of the inner dust belt and the four exoplanets in the HR8799 system with JWST's MIRI coronagraph
- Dust size and spatial distributions in debris discs: predictions for exozodiacal dust dragged in from an exo-Kuiper belt
- No significant correlation between radial velocity planet presence and debris disc properties
- What Sets the Radial Locations of Warm Debris Disks?
- Probing the Terrestrial Regions of Planetary Systems: Warm Debris Disks with Emission Features
- Collisional modelling of the debris disc around HIP 17439
- Rave: A non-parametric method for recovering the surface brightness and height profiles of edge-on debris disks
- Effects of neighbouring planets on the formation of resonant dust rings in the inner Solar System
- Tidal disruption versus planetesimal collisions as possible origins for the dispersing dust cloud around Fomalhaut
Cited by in corpus (7)
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) V: Comparison between scattered light and thermal emission
- Worlds Next Door: A Candidate Giant Planet Imaged in the Habitable Zone of Cen A. I. Observations, Orbital and Physical Properties, and Exozodi Upper Limits
- Worlds Next Door: A Candidate Giant Planet Imaged in the Habitable Zone of Cen A. II. Binary Star Modeling, Planet and Exozodi Search, and Sensitivity Analysis
- High Resolution ALMA Data of the Fomalhaut Debris Disk Confirms Apsidal Width Variation
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS). X. Interpreting the peculiar dust rings around HD 131835
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) XI: Gas-dust interactions and radial offsets between micron and millimetre-sized grains
- The HOSTS Survey: Suspected variable dust emission and constraints on companions around θ Boo