Scheila's Scar: Direct Evidence of Impact Surface Alteration on a Primitive Asteroid
arXiv:1310.8515 · doi:10.1016/j.icarus.2013.11.003
Abstract
Asteroid (596) Scheila was the first object for which the immediate aftermath of an inter-asteroidal collision was observed. In Dec. 2010, the 113 km-sized asteroid was impacted by a smaller asteroid of less than 100 m in diameter. The scale of the impactor was established by observations of fading ejecta plumes. Comparison of the light curves obtained before and after the impact allowed us to assess how much of Scheila's surface was altered. Cratering physics based on the impactor size suggests that the size of the affected area is larger than expected, (effective radii of 3.5 -- 10 km depending on the change in the albedo of the surface). Similar but more localized albedo changes have been observed on Vesta and the Martian moons, but are not understood. Empirical laws describing ejecta blankets however indicate that at distances between 3.5 -- 10 km from the crater, Scheila's surface would be covered by a thin layer 2 mm to 2 cm thick. This dusting, possibly mixed with bright impactor material may be enough to explain to observed brightness increase. Our results show that sub-critical impacts may play a significant role in processing the surfaces of asteroids. The large effect of small impacts on asteroidal light curves complicate shape modeling.
References in corpus (6)
- Main Belt Asteroids with WISE/NEOWISE I: Preliminary Albedos and Diameters
- Hubble Space Telescope Observations of Main Belt Comet (596) Scheila
- Collisional Excavation of Asteroid (596) Scheila
- Optical and Dynamical Characterization of Comet-Like Main-Belt Asteroid (596) Scheila
- Interpretation of (596) Scheila's Triple Dust Tails
- Near Infrared Observations of Comet-Like Asteroid (596) Scheila
Cited by in corpus (12)
- New and updated convex shape models of asteroids based on optical data from a large collaboration network
- The Active Asteroids
- Asteroid Family Associations of Active Asteroids
- Asteroid Models from Multiple Data Sources
- Fast Rotation and Trailing Fragments of the Active Asteroid P/2012 F5 (Gibbs)
- Discovery and Characteristics of the Rapidly Rotating Active Asteroid (62412) 2000 SY178 in the Main Belt
- Hubble and Keck Telescope Observations of Active Asteroid 288P/300163 (2006 VW139)
- Asteroid-Comet Continuum Objects in the Solar System
- Dust productivity and impact collision of the asteroid (596) Scheila
- Asteroid 2017 FZ2 et al.: signs of recent mass-shedding from YORP?
- Modelling the brightness increase signature due to asteroid collisions
- The appearance of a 'fresh' surface on 596 Scheila as a consequence of the 2010 impact event