Inversion of asteroid photometry from Gaia DR2 and the Lowell Observatory photometric database
arXiv:1909.09395 · doi:10.1051/0004-6361/201936341
Abstract
Rotation properties (spin-axis direction and rotation period) and coarse shape models of asteroids can be reconstructed from their disk-integrated brightness when measured from various viewing geometries. These physical properties are essential for creating a global picture of structure and dynamical evolution of the main belt. The number of shape and spin models can be increased not only when new data are available, but also by combining independent data sets and inverting them together. Our aim was to derive new asteroid models by processing readily available photometry. We used asteroid photometry compiled in the Lowell Observatory photometry database with photometry from the Gaia Data Release 2. Both data sources are available for about 5400 asteroids. In the framework of the Asteroids@home distributed computing project, we applied the light curve inversion method to each asteroid to find its convex shape model and spin state that fits the observed photometry. Due to the limited number of Gaia DR2 data points and poor photometric accuracy of Lowell data, we were able to derive unique models for only ~1100 asteroids. Nevertheless, 762 of these are new models that significantly enlarge the current database of about 1600 asteroid models. Our results demonstrate the importance of a combined approach to inversion of asteroid photometry. While our models in general agree with those obtained by separate inversion of Lowell and Gaia data, the combined inversion is more robust, model parameters are more constrained, and unique models can be reconstructed in many cases when individual data sets alone are not sufficient.
References in corpus (10)
- Gaia Data Release 2. Summary of the contents and survey properties
- The Gaia mission
- Combining asteroid models derived by lightcurve inversion with asteroidal occultation silhouettes
- Gaia Data Release 2: Observations of solar system objects
- Asteroids' physical models from combined dense and sparse photometry and scaling of the YORP effect by the observed obliquity distribution
- Spin states of asteroids in the Eos collisional family
- Asteroid models reconstructed from the Lowell Photometric Database and WISE data
- Reconstruction of asteroid spin states from Gaia DR2 photometry
- Main Belt Asteroid Shape Distribution from Gaia DR2
- Shape and spin determination of Barbarian asteroids
Cited by in corpus (12)
- Reconstruction of asteroid spin states from Gaia DR3 photometry
- Asteroid models reconstructed from ATLAS photometry
- Combined spin orientation and phase function of asteroids
- Dynamical evolution of basaltic asteroids outside the Vesta family in the inner main belt
- Scaling slowly rotating asteroids by stellar occultations
- Thermophysical Modeling of 20 Themis Family Asteroids with WISE/NEOWISE Observations
- Shape models and spin states of Jupiter Trojans: Testing the streaming instability formation scenario
- Asteroid spin-states of a 4 Gyr collisional family
- Improved models for near-Earth asteroids (2100) Ra-Shalom, (3103) Eger, (12711) Tukmit & (161989) Cacus
- (208) Lacrimosa: A case that missed the Slivan state?
- Weak S-type asteroids compared to C-type explain the observed size distribution of the main belt
- Spin Parameters and Shape Models of Near-Earth Asteroids (4660) Nereus, (21088) Chelyabinsk, (66146) 1998 TU3, and (297418) 2000 SP43