Spin states of asteroids in the Eos collisional family
arXiv:1707.05507 · doi:10.1016/j.icarus.2017.07.007
Abstract
Eos family was created during a catastrophic impact about 1.3 Gyr ago. Rotation states of individual family members contain information about the history of the whole population. We aim to increase the number of asteroid shape models and rotation states within the Eos collision family, as well as to revise previously published shape models from the literature. Such results can be used to constrain theoretical collisional and evolution models of the family, or to estimate other physical parameters by a thermophysical modeling of the thermal infrared data. We use all available disk-integrated optical data (i.e., classical dense-in-time photometry obtained from public databases and through a large collaboration network as well as sparse-in-time individual measurements from a few sky surveys) as input for the convex inversion method, and derive 3D shape models of asteroids together with their rotation periods and orientations of rotation axes. We present updated shape models for 15 asteroids and new shape model determinations for 16 asteroids. Together with the already published models from the publicly available DAMIT database, we compiled a sample of 56 Eos family members with known shape models that we used in our analysis of physical properties within the family. Rotation states of asteroids smaller than ~20 km are heavily influenced by the YORP effect, whilst the large objects more or less retained their rotation state properties since the family creation. Moreover, we also present a shape model and bulk density of asteroid (423) Diotima, an interloper in the Eos family, based on the disk-resolved data obtained by the Near InfraRed Camera (Nirc2) mounted on the W.M. Keck II telescope.
Accepted for publication in ICARUS Special Issue - Asteroids: Origin, Evolution & Characterization
References in corpus (13)
- Thermal inertia of near-Earth asteroids and implications for the magnitude of the Yarkovsky effect
- Asteroid family ages
- Combining asteroid models derived by lightcurve inversion with asteroidal occultation silhouettes
- Constraining the cometary flux through the asteroid belt during the late heavy bombardment
- Asteroids' physical models from combined dense and sparse photometry and scaling of the YORP effect by the observed obliquity distribution
- Thermophysical modeling of asteroids from WISE thermal infrared data - Significance of the shape model and the pole orientation uncertainties
- ADAM: a general method for using various data types in asteroid reconstruction
- (25143) Itokawa: The Power of Radiometric Techniques for the Interpretation of Remote Thermal Observations in the Light of the Hayabusa Rendezvous Results
- The Eos family halo
- Physical characterisation of near-Earth asteroid (1620) Geographos. Reconciling radar and thermal-infrared observations
- Reconstructing the size distribution of the primordial Main Belt
- Distribution of spin-axes longitudes and shape elongations of main-belt asteroids
- Shape model of asteroid (130) Elektra from optical photometry and disk-resolved images from VLT/SPHERE and Nirc2/Keck
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- Combined spin orientation and phase function of asteroids
- Initial Characterization of Active Transitioning Centaur, P/2019 LD2 (ATLAS), using Hubble, Spitzer, ZTF, Keck, APO and GROWTH Visible & Infrared Imaging and Spectroscopy
- Thermal properties of large main-belt asteroids observed by Herschel PACS
- Time-series and Phasecurve Photometry of Episodically-Active Asteroid (6478) Gault in a Quiescent State Using APO, GROWTH, P200 and ZTF
- Keck and Gemini spectral characterization of Lucy mission fly-by target (152830) Dinkinesh
- Asteroid migration due to the Yarkovsky effect and the distribution of the Eos family
- Scaling slowly rotating asteroids by stellar occultations
- Asteroid spin-states of a 4 Gyr collisional family