Ground-based astrometry calibrated by Gaia DR1: new perspectives in asteroid orbit determination
arXiv:1709.06471 · doi:10.1051/0004-6361/201731439
Abstract
The Gaia Data Release 1 (GDR1) is a first, important step on the path of evolution of astrometric accuracy towards a much improved situation. Although asteroids are not present in GDR1, this intermediate release already impacts asteroid astrometry. Our goal is to investigate how the GDR1 can change the approach to a few typical problems, including the determination of orbits from short-arc astrometry, the exploitation of stellar occultations, and the impact risk assessment. We employ optimised asteroid orbit determination tools, and study the resulting orbit accuracy and post-fit residuals. For this goal, we use selected ground-based asteroid astrometry, and occultation events observed in the past. All measurements are calibrated by using GDR1 stars. We show that, by adopting GDR1, very short measurement arcs can already provide interesting orbital solutions, capable of correctly identifying Near Earth Asteroids (NEAs) and providing a much more accurate risk rating. We also demonstrate that occultations, previously used to derive asteroid size and shapes, now reach a new level of accuracy at which they can be fruitfully used to obtain astrometry at the level of accuracy of Gaia star positions.
References in corpus (8)
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Gaia Data Release 1: Astrometry - one billion positions, two million proper motions and parallaxes
- Star catalog position and proper motion corrections in asteroid astrometry
- Systematic ranging and late warning asteroid impacts
- Asteroid occultations today and tomorrow: toward the GAIA era
- GBOT: ground based optical tracking of the Gaia satellite
- Quasi-automatic software support for Gaia ground based optical tracking
- Characterizing the astrometric precision limit for moving targets observed with digital-array detectors
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- Microarcsecond Astrometry: Science Highlights from Gaia
- NEOExchange -- An online portal for NEO and Solar System science
- Asteroid astrometry by stellar occultations: Accuracy of the existing sample from orbital fitting
- A survey for occultation astrometry of Main Belt: expected astrometric performances
- Astrometry via Close Approach Events: Applications to Main-Belt Asteroid (702) Alauda