Orbits of Near-Earth Asteroid Triples 2001 SN263 and 1994 CC: Properties, Origin, and Evolution
arXiv:1012.2154 · doi:10.1088/0004-6256/141/5/154
Abstract
Three-body model fits to Arecibo and Goldstone radar data reveal the nature of two near-Earth asteroid triples. Triple-asteroid system 2001 SN263 is characterized by a primary of ~10^13 kg, an inner satellite ~1% as massive orbiting at ~3 primary radii in ~0.7 days, and an outer satellite ~2.5% as massive orbiting at ~13 primary radii in ~6.2 days. 1994 CC is a smaller system with a primary of mass ~2.6 \times 10^11 kg and two satellites ~2% and ~1% as massive orbiting at distances of ~5.5 and ~19.5 primary radii. Their orbital periods are ~1.2 and ~8.4 days. Examination of resonant arguments shows that the satellites are not currently in a mean-motion resonance. Precession of the apses and nodes are detected in both systems (2001 SN263 inner body: d{\varpi}/dt ~1.1 deg/day, 1994 CC inner body: d{\varpi}/dt ~ -0.2 deg/day), which is in agreement with analytical predictions of the secular evolution due to mutually interacting orbits and primary oblateness. Nonzero mutual inclinations between the orbital planes of the satellites provide the best fits to the data in both systems (2001 SN263: ~14 degrees, 1994 CC: ~16 degrees). Our best-fit orbits are consistent with nearly circular motion, except for 1994 CC's outer satellite which has an eccentric orbit of e ~ 0.19. We examine several processes that can generate the observed eccentricity and inclinations, including the Kozai and evection resonances, past mean-motion resonance crossings, and close encounters with terrestrial planets. In particular, we find that close planetary encounters can easily excite the eccentricities and mutual inclinations of the satellites' orbits to the currently observed values.
17 pages, accepted to Astronomical Journal
References in corpus (7)
- Orbits and Masses of the Satellites of the Dwarf Planet Haumea = 2003 EL61
- Tidal Evolution of Rubble Piles
- Masses of Nix and Hydra
- Do Planetary Encounters Reset Surfaces of Near Earth Asteroids?
- (47171) 1999 TC36, A Transneptunian Triple
- A Dynamical Solution of the Triple Asteroid System (45) Eugenia
- On the Stability of the Satellites of Asteroid 87 Sylvia
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- Physical and dynamical properties of the main belt triple asteroid (87) Sylvia
- The Formation of the Wide Asynchronous Binary Asteroid Population
- Equilibrium Points and Periodic Orbits in the Vicinity of Asteroids with an Application to 216 Kleopatra
- Stability Regions Around the Components of the Triple System 2001 SN263
- Binary Asteroid Encounters with Terrestrial Planets: Timescales and Effects
- Dynamical Configurations of Celestial Systems Comprised of Multiple Irregular Bodies
- Orbits, masses, and evolution of main belt triple (87) Sylvia
- Radar Imaging and Physical Characterization of Near-Earth Asteroid (162421) 2000 ET70
- Asteroid triple system 2001 SN263 : surfaces characteristics and dynamical environment
- Beyond Point Masses. II. Non-Keplerian Shape Effects are Detectable in Several TNO Binaries
- Stable retrograde orbits around the triple system 2001 SN263
- The Role of Kozai Cycles in Near-Earth Binary Asteroids
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- Relative Effect of Inclinations for Moonlets in the Triple Asteroidal Systems
- 2001 SN263 -- the contribution of their irregular shapes on the neighborhood dynamics
- Numerical modeling of material points evolution in a system with gravity
- Definition of multispectral camera system parameters to model the asteroid 2001 SN263