The binary near-Earth asteroid (175706) 1996 FG3 - An observational constraint on its orbital evolution
arXiv:1406.4677 · doi:10.1016/j.icarus.2014.09.023
Abstract
Using our photometric observations taken between 1996 and 2013 and other published data, we derived properties of the binary near-Earth asteroid (175706) 1996 FG3 including new measurements constraining evolution of the mutual orbit with potential consequences for the entire binary asteroid population. We also refined previously determined values of parameters of both components, making 1996 FG3 one of the most well understood binary asteroid systems. We determined the orbital vector with a substantially greater accuracy than before and we also placed constraints on a stability of the orbit. Specifically, the ecliptic longitude and latitude of the orbital pole are 266° and -83°, respectively, with the mean radius of the uncertainty area of 4°, and the orbital period is 16.1508 +/- 0.0002 h (all quoted uncertainties correspond to 3sigma). We looked for a quadratic drift of the mean anomaly of the satellite and obtained a value of 0.04 +/- 0.20 deg/yr^2, i.e., consistent with zero. The drift is substantially lower than predicted by the pure binary YORP (BYORP) theory of McMahon and Scheeres (McMahon, J., Scheeres, D. [2010]. Icarus 209, 494-509) and it is consistent with the theory of an equilibrium between BYORP and tidal torques for synchronous binary asteroids as proposed by Jacobson and Scheeres (Jacobson, S.A., Scheeres, D. [2011]. ApJ Letters, 736, L19). Based on the assumption of equilibrium, we derived a ratio of the quality factor and tidal Love number of Q/k = 2.4 x 10^5 uncertain by a factor of five. We also derived a product of the rigidity and quality factor of mu Q = 1.3 x 10^7 Pa using the theory that assumes an elastic response of the asteroid material to the tidal forces. This very low value indicates that the primary of 1996 FG3 is a 'rubble pile', and it also calls for a re-thinking of the tidal energy dissipation in close asteroid binary systems.
Many changes based on referees comments
References in corpus (7)
- Formation of asteroid pairs by rotational fission
- Tidal Evolution of Rubble Piles
- Outburst activity in comets: II. A multi-band photometric monitoring of comet 29p/Schwassmann-Wachmann 1
- The Centurion 18 telescope of the Wise Observatory
- Photometry and Spin Rate Distribution of Small-Sized Main Belt Asteroids
- Shape, Thermal and Surface Properties determination of a Candidate Spacecraft Target Asteroid (175706) 1996 FG3
- Physical characterization and origin of binary near-Earth asteroid (175706) 1996 FG3
Cited by in corpus (27)
- The Yarkovsky and YORP Effects
- Rubble Pile Asteroids
- Orbital Period Change of Dimorphos Due to the DART Kinetic Impact
- Asteroid Systems: Binaries, Triples, and Pairs
- Yarkovsky Drift Detections for 247 Near-Earth Asteroids
- The Excited Spin State of Dimorphos Resulting from the DART Impact
- Detecting the Yarkovsky effect among near-Earth asteroids from astrometric data
- Near-Earth Asteroid Satellite Spins Under Spin-Orbit Coupling
- Disaggregation of Small, Cohesive Rubble Pile Asteroids due to YORP
- Asteroid 1566 Icarus's size, shape, orbit, and Yarkovsky drift from radar observations
- How Many Hydrated NEOs Are There?
- Matching asteroid population characteristics with a model constructed from the YORP-induced rotational fission hypothesis
- Dimorphos orbit determination from mutual events photometry
- Energy Dissipation in Synchronous Binary Asteroids
- Non-principal axis rotation in binary asteroid systems and how it weakens the BYORP effect
- The Yarkovsky effect on the long-term evolution of binary asteroids
- Near-infrared thermal emission from near-Earth asteroids: Aspect-dependent variability
- Breakup of the Synchronous State of Binary Asteroid Systems
- Chang'e-2 spacecraft observations of asteroid 4179 Toutatis
- Tidal dissipation of binaries in asteroid pairs
- The binary Yarkovsky effect on the primary asteroid with applications to singly synchronous binary asteroids
- Mineralogical Characterization and Phase Angle Study of Two Binary Near-Earth Asteroids, Potential Targets for NASA's Janus Mission
- Multiple origins of asteroid pairs
- A satellite orbit drift in binary near-Earth asteroids (66391) 1999 KW4 and (88710) 2001 SL9 -- Indication of the BYORP effect
- Orbits of very distant asteroid satellites
- A 3D thermophysical model for binary asteroid systems: Application to the BYORP effect on (175706) 1996 FG3
- Observed tidal evolution of Kleopatra's outer satellite