New and updated convex shape models of asteroids based on optical data from a large collaboration network
arXiv:1510.07422 · doi:10.1051/0004-6361/201527441
Abstract
Asteroid modeling efforts in the last decade resulted in a comprehensive dataset of almost 400 convex shape models and their rotation states. This amount already provided a deep insight into physical properties of main-belt asteroids or large collisional families. We aim to increase the number of asteroid shape models and rotation states. Such results are an important input for various further studies such as analysis of asteroid physical properties in different populations, including smaller collisional families, thermophysical modeling, and scaling shape models by disk-resolved images, or stellar occultation data. This provides, in combination with known masses, bulk density estimates, but constrains also theoretical collisional and evolutional models of the Solar System. 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 an input for the convex inversion method, and derive 3D shape models of asteroids, together with their rotation periods and orientations of rotation axes. The key ingredient is the support of more that one hundred observers who submit their optical data to publicly available databases. We present updated shape models for 36 asteroids, for which mass estimates are currently available in the literature or their masses will be most likely determined from their gravitational influence on smaller bodies, which orbital deflection will be observed by the ESA Gaia astrometric mission. This was achieved by using additional optical data from recent apparitions for the shape optimization. Moreover, we also present new shape model determinations for 250 asteroids, including 13 Hungarias and 3 near-Earth asteroids.
Accepted for publication in A&A
References in corpus (26)
- Density of asteroids
- Combining asteroid models derived by lightcurve inversion with asteroidal occultation silhouettes
- Hubble Space Telescope Observations of Main Belt Comet (596) Scheila
- Thermo-physical properties of 162173 (1999 JU3), a potential flyby and rendezvous target for interplanetary missions
- 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
- Physical Properties of (2) Pallas
- Sizes of main-belt asteroids by combining shape models and Keck adaptive aptics observations
- ADAM: a general method for using various data types in asteroid reconstruction
- Shape modeling technique KOALA validated by ESA Rosetta at (21) Lutetia
- Asteroid models from the Lowell Photometric Database
- Instrumental Methods for Professional and Amateur Collaborations in Planetary Astronomy
- Physical properties of ESA Rosetta target asteroid (21) Lutetia: Shape and flyby geometry
- An anisotropic distribution of spin vectors in asteroid families
- Physical and dynamical properties of the main belt triple asteroid (87) Sylvia
- Asteroid Spin-Rate Study using the Intermediate Palomar Transient Factory
- New insights on the binary asteroid 121 Hermione
- Asteroid rotation periods from the Palomar Transient Factory survey
- A Dynamical Solution of the Triple Asteroid System (45) Eugenia
- Asteroid spin-axis longitudes from the Lowell Observatory database
- Spin Axes and Shape Models of Asteroid Pairs: Fingerprints of YORP and a Path to the Density of Rubble Piles
- Scheila's Scar: Direct Evidence of Impact Surface Alteration on a Primitive Asteroid
- The non-convex shape of (234) Barbara, the first Barbarian
- Historical Perspective on Computational Star Formation
- Asteroids@home - A BOINC distributed computing project for asteroid shape reconstruction
- The potential of sparse photometric data in asteroid shape modeling
Cited by in corpus (39)
- Volumes and bulk densities of forty asteroids from ADAM shape modeling
- Thermophysical modeling of main-belt asteroids from WISE thermal data
- Asteroid models from the Lowell Photometric Database
- Solar System Science with ESA Euclid
- SsODNet: The Solar system Open Database Network
- Precise astrometry and diameters of asteroids from occultations -- a data-set of observations and their interpretation
- Spin states of asteroids in the Eos collisional family
- Asteroid models reconstructed from the Lowell Photometric Database and WISE data
- Adaptive optics and lightcurve data of asteroids: twenty shape models and information content analysis
- Photometric survey, modelling, and scaling of long-period and low-amplitude asteroids
- Uninterrupted optical light curves of main-belt asteroids from the K2 Mission
- Distribution of spin-axes longitudes and shape elongations of main-belt asteroids
- Physical, spectral, and dynamical properties of asteroid (107) Camilla and its satellites
- Evidence for differentiation of the most primitive small bodies
- Thermal properties of slowly rotating asteroids: Results from a targeted survey
- Inversion of asteroid photometry from Gaia DR2 and the Lowell Observatory photometric database
- Binary asteroid (31) Euphrosyne: Ice-rich and nearly spherical
- Shape model of asteroid (130) Elektra from optical photometry and disk-resolved images from VLT/SPHERE and Nirc2/Keck
- Dynamical evolution of basaltic asteroids outside the Vesta family in the inner main belt
- Thermal properties of large main-belt asteroids observed by Herschel PACS
- Asteroid shapes and thermal properties from combined optical and mid-infrared photometry inversion
- Shape models of asteroids based on lightcurve observations with BlueEye600 robotic observatory
- Reconstruction of asteroid spin states from Gaia DR2 photometry
- Properties of slowly rotating asteroids from the Convex Inversion Thermophysical Model
- Non-Vestoid candidate asteroids in the inner main belt
- Photometric study for near-Earth asteroid (155140) 2005 UD
- Thermophysical Modeling of 20 Themis Family Asteroids with WISE/NEOWISE Observations
- Scaling slowly rotating asteroids by stellar occultations
- Photometry of selected outer main belt asteroids
- 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
- Deep operator neural network applied to efficient computation of asteroid surface temperature and the Yarkovsky effect
- Surface slopes of asteroid pairs as indicators of mechanical properties and cohesion
- A method of photometric data extraction for asteroids from time-domain surveys
- High-Resolution Simulations of Catastrophic Disruptions: Resultant Shape Distributions
- 2021 occultations and transits of Linus orbiting (22) Kalliope: I. Polygonal and `cliptracing' algorithm
- (208) Lacrimosa: A case that missed the Slivan state?
- Spin Parameters and Shape Models of Near-Earth Asteroids (4660) Nereus, (21088) Chelyabinsk, (66146) 1998 TU3, and (297418) 2000 SP43