The DECam Ecliptic Exploration Project (DEEP). VII. The Strengths of Three Superfast Rotating Main-belt Asteroids from a Preliminary Search of DEEP Data
arXiv:2410.01147 · doi:10.3847/1538-3881/ad7366
Abstract
Superfast rotators (SFRs) are small solar system objects that rotate faster than generally possible for a cohesionless rubble pile. Their rotational characteristics allow us to make inferences about their interior structure and composition. Here, we present the methods and results from a preliminary search for SFRs in the DECam Ecliptic Exploration Project (DEEP) data set. We find three SFRs from a sample of 686 main-belt asteroids, implying an occurrence rate of 0.4 -0.3/+0.1 percent - a higher incidence rate than has been measured by previous studies. We suggest that this high occurrence rate is due to the small sub-kilometer size regime to which DEEP has access: the objects searched here were as small as 500 m. We compute the minimum required cohesive strength for each of these SFRs and discuss the implications of these strengths in the context of likely evolution mechanisms. We find that all three of these SFRs require strengths that are more than that of weak regolith but consistent with many cohesive asteroid strengths reported in the literature. Across the full DEEP data set, we have identified ~70,000 Main-Belt Asteroids and expect ~300 SFRs - a result that will be assessed in a future paper.
References in corpus (9)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- Physical properties of asteroid Dimorphos as derived from the DART impact
- A million asteroid observations in the Sloan Digital Sky Survey
- A Martian Origin for the Mars Trojan Asteroids
- Large Super-Fast Rotator Hunting Using the Intermediate Palomar Transient Factory
- Observations of two super fast rotator NEAs: 2021 NY and 2022 AB
- The Solar System Notification Alert Processing System (SNAPS): Design, Architecture, and First Data Release (SNAPShot1)
- Removing Aliases in Time-Series Photometry