Asteroid models reconstructed from the Lowell Photometric Database and WISE data
arXiv:1807.02083 · doi:10.1051/0004-6361/201833437
Abstract
Information about the spin state of asteroids is important for our understanding of the dynamical processes affecting them. However, spin properties of asteroids are known for only a small fraction of the whole population. To enlarge the sample of asteroids with a known rotation state and basic shape properties, we combined sparse-in-time photometry from the Lowell Observatory Database with flux measurements from NASA's WISE satellite. We applied the light curve inversion method to the combined data. The thermal infrared data from WISE were treated as reflected light because the shapes of thermal and visual light curves are similar enough for our purposes. While sparse data cover a wide range of geometries over many years, WISE data typically cover an interval of tens of hours, which is comparable to the typical rotation period of asteroids. The search for best-fitting models was done in the framework of the Asteroids@home distributed computing project. By processing the data for almost 75,000 asteroids, we derived unique shape models for about 900 of them. Some of them were already available in the DAMIT database and served us as a consistency check of our approach. In total, we derived new models for 662 asteroids, which significantly increased the total number of asteroids for which their rotation state and shape are known. For another 789 asteroids, we were able to determine their sidereal rotation period and estimate the ecliptic latitude of the spin axis direction. We studied the distribution of spins in the asteroid population. We revealed a significant discrepancy between the number of prograde and retrograde rotators for asteroids smaller than about 10 km. Combining optical photometry with thermal infrared light curves is an efficient approach to obtaining new physical models of asteroids.
References in corpus (9)
- Thermal inertia of near-Earth asteroids and implications for the magnitude of the Yarkovsky effect
- Combining asteroid models derived by lightcurve inversion with asteroidal occultation silhouettes
- 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
- Thermophysical modeling of main-belt asteroids from WISE thermal data
- Spin states of asteroids in the Eos collisional family
- Photometric survey, modelling, and scaling of long-period and low-amplitude asteroids
- Sizes and albedos of Mars-crossing asteroids from WISE/NEOWISE data
- Asteroid shapes and thermal properties from combined optical and mid-infrared photometry inversion
Cited by in corpus (19)
- Reconstruction of asteroid spin states from Gaia DR3 photometry
- Asteroid models reconstructed from ATLAS photometry
- Thermal properties of slowly rotating asteroids: Results from a targeted survey
- Inversion of asteroid photometry from Gaia DR2 and the Lowell Observatory photometric database
- Combined spin orientation and phase function of asteroids
- Q-type asteroids: Possibility of non-fresh weathered surfaces
- Dynamical evolution of basaltic asteroids outside the Vesta family in the inner main belt
- The determination of asteroid H and G phase function parameters using GAIA DR2
- Thermal properties of large main-belt asteroids observed by Herschel PACS
- -band photometry of asteroids from ASAS-SN: Finding asteroids with slow spin
- Reconstruction of asteroid spin states from Gaia DR2 photometry
- Scaling slowly rotating asteroids by stellar occultations
- Thermophysical Modeling of 20 Themis Family Asteroids with WISE/NEOWISE Observations
- Determination of size, albedo and thermal inertia of 10 Vesta family asteroids with WISE/NEOWISE observations
- Asteroid spin-states of a 4 Gyr collisional family
- Physical parameters of selected Gaia mass asteroids
- Identification of asteroids using the Virtual Observatory: the WFCAM Transit Survey
- Shape model and spin state of non-principal axis rotator (5247) Krylov
- Asteroid sizes determined with thermophysical model and stellar occultations