Asteroid Spin-Rate Study using the Intermediate Palomar Transient Factory
arXiv:1506.08493 · doi:10.1088/0067-0049/219/2/27
Abstract
Two dedicated asteroid rotation-period surveys have been carried out using data taken on January 6-9 and February 20-23 of 2014 by the Intermediate Palomar Transient Factory (iPTF) in the ~band with -min cadence. The total survey area covered 174~deg in the ecliptic plane. Reliable rotation periods for 1,438 asteroids are obtained from a larger data set of 6,551 mostly main-belt asteroids, each with ~detections. Analysis of 1751, PTF based, reliable rotation periods clearly shows the "spin barrier" at ~hours for "rubble-pile" asteroids. We also found a new large-sized super-fast rotator, 2005 UW163 (Chang et al., 2014), and other five candidates as well. Our spin-rate distributions of asteroids with ~km shows number decrease when frequency greater than 5 rev/day, which is consistent to that of the Asteroid Light Curve Database (LCDB, Warner et al., 2009) and the result of (Masiero et al., 2009). We found the discrepancy in the spin-rate distribution between our result and (Pravec et al., 2008, update 2014-04-20) is mainly from asteroids with mag that might be primarily due to different survey strategies. For asteroids with ~km, we found a significant number drop at rev/day. The YORP effect timescale for small-sized asteroid is shorter that makes more elongate objets spun up to reach their spin-rate limit and results in break-up. The K-S test suggests a possible difference in the spin-rate distributions of C- and S-type asteroids. We also find that C-type asteroids have a smaller spin-rate limit than the S-type, which agrees with the general sense that the C-type has lower bulk density than the S-type.
Submitted to ApJ (Jan, 2015). Accepted by ApJ (June, 2015). The whole set of the folded lightcurves will be available on the published article
References in corpus (5)
- Densities of Solar System Objects from their Rotational Lightcurves
- IPAC Image Processing and Data Archiving for the Palomar Transient Factory
- Photometry and Spin Rate Distribution of Small-Sized Main Belt Asteroids
- 313 new asteroid rotation periods from Palomar Transient Factory observations
- A New Large Super-Fast Rotator: (335433) 2005 UW163
Cited by in corpus (25)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The Zwicky Transient Facility: Science Objectives
- Rubble Pile Asteroids
- Machine Learning for the Zwicky Transient Facility
- New and updated convex shape models of asteroids based on optical data from a large collaboration network
- A 2 km-size asteroid challenging the rubble-pile spin barrier - a case for cohesion
- Visible spectroscopy from the Mission Accessible Near-Earth Object Survey (MANOS): Taxonomic dependence on asteroid size
- Anatomy of an Asteroid Break-Up: The Case of P/2013 R3
- The Spin-Barrier Ratio for S and C-Type Main Asteroids Belt
- Main-belt asteroids in the K2 Uranus field
- The fast spin of near-Earth asteroid (455213) 2001 OE84, revisited after 14 years: constraints on internal structure
- Large Super-Fast Rotator Hunting Using the Intermediate Palomar Transient Factory
- Investigating the stability of mass transfer in neutron star-helium white dwarf binaries
- Confirmation of Large Super-Fast Rotator (144977) 2005 EC127
- Size distributions of bluish and reddish small main-belt asteroids obtained by Subaru/Hyper Suprime-Cam
- Evolution of an asteroid family under YORP, Yarkovsky and collisions
- Asteroid spin-states of a 4 Gyr collisional family
- Asteroid Discovery and Light Curve Extraction Using the Hough Transform -- A Rotation Period Study for Sub-Kilometer Main-Belt Asteroids
- Extreme asteroids in the Pan-STARRS 1 Survey
- Surface slopes of asteroid pairs as indicators of mechanical properties and cohesion
- Spin states of X-complex asteroids in the inner main belt -- I. Investigating the Athor and Zita collisional families
- A Quick Test on Rotation Period Clustering for the Small Members of the Koronis Family
- Shape-Driven Selection Effects for Aspherical Near-Earth Objects in Systematic Surveys
- A Fireball and Potentially Hazardous Binary Near-Earth Asteroid (164121) 2003 YT
- Searching for Super-Fast Rotators Using the Pan-STARRS 1