Asteroid Models from Multiple Data Sources
arXiv:1502.04816 · doi:10.2458/azu_uapress_9780816532131-ch010
Abstract
In the past decade, hundreds of asteroid shape models have been derived using the lightcurve inversion method. At the same time, a new framework of 3-D shape modeling based on the combined analysis of widely different data sources such as optical lightcurves, disk-resolved images, stellar occultation timings, mid-infrared thermal radiometry, optical interferometry, and radar delay-Doppler data, has been developed. This multi-data approach allows the determination of most of the physical and surface properties of asteroids in a single, coherent inversion, with spectacular results. We review the main results of asteroid lightcurve inversion and also recent advances in multi-data modeling. We show that models based on remote sensing data were confirmed by spacecraft encounters with asteroids, and we discuss how the multiplication of highly detailed 3-D models will help to refine our general knowledge of the asteroid population. The physical and surface properties of asteroids, i.e., their spin, 3-D shape, density, thermal inertia, surface roughness, are among the least known of all asteroid properties. Apart for the albedo and diameter, we have access to the whole picture for only a few hundreds of asteroids. These quantities are nevertheless very important to understand as they affect the non-gravitational Yarkovsky effect responsible for meteorite delivery to Earth, or the bulk composition and internal structure of asteroids.
chapter that will appear in a Space Science Series book Asteroids IV
References in corpus (12)
- 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
- New determination of the size and bulk density of the binary asteroid 22 Kalliope from observations of mutual eclipses
- GRAVITY: getting to the event horizon of Sgr A*
- The shape distribution of asteroid families -- evidence for evolution driven by small impacts
- Physical and dynamical properties of the main belt triple asteroid (87) Sylvia
- Physical Properties of Near-Earth Asteroid 2011 MD
- Asteroid occultations today and tomorrow: toward the GAIA era
- The thermal emission from boulders on (25143) Itokawa and general implications for the YORP effect
- Asteroid rotation excitation by subcatastrophic impacts
- The representation of asteroid shapes: a test for the inversion of Gaia photometry
- The small binary asteroid (939) Isberga
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- Euclid. I. Overview of the Euclid mission
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- Connecting Asteroids and Meteorites with visible and near-infrared spectroscopy
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- A 2 km-size asteroid challenging the rubble-pile spin barrier - a case for cohesion
- Small Solar System Bodies as granular media
- Solar System Science with ESA Euclid
- The spherical Brazil Nut Effect and its significance to asteroids
- Spin states of asteroids in the Eos collisional family
- Low thermal conductivity of the superfast rotator (499998) 2011 PT
- Combined spin orientation and phase function of asteroids
- DISCUS - The Deep Interior Scanning CubeSat mission to a rubble pile near-Earth asteroid
- Small Bodies: Near and Far Database for thermal infrared observations of small bodies in the Solar System
- Thermal properties of large main-belt asteroids observed by Herschel PACS
- Comparing NEO Search Telescopes
- Distribution of shape elongations of main belt asteroids derived from Pan-STARRS1 photometry
- Thermophysical Modeling of Asteroid Surfaces using Ellipsoid Shape Models
- Rotation periods of asteroids from light curves of TESS data
- Identification of asteroids using the Virtual Observatory: the WFCAM Transit Survey
- Astrocladistics of the Jovian Trojan Swarms
- Shape and spin distributions of asteroid populations from brightness variation estimates and large databases
- Asteroid models from generalised projections: Essential facts for asteroid modellers and geometric inverse problem solvers
- A dynamical dichotomy in large binary asteroids
- Basis functions and uniqueness in orbit-averaged population analysis of asteroids
- Characterization of Temporarily-Captured Minimoon 2020 CD by Keck Time-resolved Spectrophotometry
- Science with MATISSE