A second planetesimal collision in the Fomalhaut system
arXiv:2512.15861 · doi:10.1126/science.adu6266
Abstract
The nearby star Fomalhaut is orbited by a compact source, Fomalhaut b, which has previously been interpreted as either a dust-enshrouded exoplanet or a dust cloud generated by the collision of two planetesimals. Such collisions are rarely observed but their debris can appear in direct imaging. We report Hubble Space Telescope observations that show the appearance in 2023 of a second point source around Fomalhaut, resembling the appearance of Fomalhaut b twenty years earlier. We interpret this additional source as a dust cloud produced by a recent impact between two planetesimals. The positions and motion of two impact-generated dust clouds over twenty years provide constraints on the collisional dynamics in the debris belt.
Published online in Science First Release on December 18, 2025. 32 pgs, 15 figs, 6 tables. This is the author's version of the work. It is posted here by permission of the AAAS for personal use, not for redistribution
References in corpus (39)
- emcee: The MCMC Hammer
- Validation of the new Hipparcos reduction
- Angular Differential Imaging: a Powerful High-Contrast Imaging Technique
- Optical Images of an Exosolar Planet 25 Light Years from Earth
- Detection and Characterization of Exoplanets and Disks using Projections on Karhunen-Loeve Eigenimages
- A new algorithm for point spread function subtraction in high-contrast imaging: a demonstration with angular differential imaging
- A planetary system as the origin of structure in Fomalhaut's dust belt
- How Observations of Circumstellar Disk Asymmetries Can Reveal Hidden Planets: Pericenter Glow and its Application to the HR 4796 Disk
- Collisional Processes in Extrasolar Planetsimal Disks - Dust Clumps in Fomalhaut's Debris Disk
- Resonant Trapping of Planetesimals by Planet Migration: Debris Disk Clumps and Vega's Similarity to the Solar System
- Long-Term Collisional Evolution of Debris Disks
- On the Age and Binarity of Fomalhaut
- orbitize!: A Comprehensive Orbit-fitting Software Package for the High-contrast Imaging Community
- STIS Coronagraphic Imaging of Fomalhaut: Main Belt Structure and the Orbit of Fomalhaut b
- Debris disk size distributions: steady state collisional evolution with P-R drag and other loss processes
- Direct Imaging Confirmation and Characterization of a Dust-Enshrouded Candidate Exoplanet Orbiting Fomalhaut
- Debris from terrestrial planet formation: the Moon-forming collision
- Dust in Resonant Extrasolar Kuiper Belts - Grain Size and Wavelength Dependence of Disk Structure
- Orbits for the Impatient: A Bayesian Rejection Sampling Method for Quickly Fitting the Orbits of Long-Period Exoplanets
- Improving and Assessing Planet Sensitivity of the GPI Exoplanet Survey with a Forward Model Matched Filter
- Hubble Space Telescope Observations of Main Belt Comet (596) Scheila
- A collision in 2009 as the origin of the debris trail of asteroid P/2010 A2
- beta Pic b position relative to the Debris Disk
- A Complete ALMA Map of the Fomalhaut Debris Disk
- The Orbit and Transit Prospects for Pictoris b constrained with One Milliarcsecond Astrometry
- Fomalhaut b: Independent Analysis of the Hubble Space Telescope Public Archive Data
- Collisional Evolution of Irregular Satellite Swarms: Detectable Dust around Solar System and Extrasolar Planets
- Solution to the debris disc mass problem: planetesimals are born small?
- Observations of fast-moving features in the debris disk of AU Mic on a three-year timescale: Confirmation and new discoveries
- 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
- New HST data and modeling reveal a massive planetesimal collision around Fomalhaut
- Extreme Debris Disk Variability -- Exploring the Diverse Outcomes of Large Asteroid Impacts During the Era of Terrestrial Planet Formation
- 591 high velocity stars in the Galactic halo selected from LAMOST DR7 and Gaia DR2
- Fomalhaut b as a Dust Cloud: Frequent Collisions within the Fomalhaut Disk
- Fomalhaut b as a Cloud of Dust: Testing Aspects of Planet Formation Theory
- Expelled grains from an unseen parent body around AU Mic
- Extreme Variability of the V488 Persei Debris Disk
- Sudden extreme obscuration of a Sun-like main-sequence star: evolution of the circumstellar dust around ASASSN-21qj