Milliarcsecond astrometry for the Galilean moons using stellar occultations
arXiv:2203.11711 · doi:10.3847/1538-3881/ac6108
Abstract
A stellar occultation occurs when a Solar System object passes in front of a star for an observer. This technique allows the determination of sizes and shapes of the occulting body with kilometer precision. Also, this technique constrains the occulting body's positions, albedos, densities, etc. In the context of the Galilean moons, these events can provide their best ground-based astrometry, with uncertainties in the order of 1 mas ( 3 km at Jupiter's distance during opposition). We organized campaigns and successfully observed a stellar occultation by Io (JI) in 2021, one by Ganymede (JIII) in 2020, and one by Europa (JII) in 2019, with stations in North and South America. Also, we re-analyzed two previously published events, one by Europa in 2016 and another by Ganymede in 2017. Then, we fit the known 3D shape of the occulting satellite and determine its center of figure. That resulted in astrometric positions with uncertainties in the milliarcsecond level. The positions obtained from these stellar occultations can be used together with dynamical models to ensure highly accurate orbits of the Galilean moons. These orbits can help plan future space probes aiming at the Jovian system, such as JUICE by ESA and Europa Clipper by NASA, and allow more efficient planning of flyby maneuvers.
19 pages, 25 figures, Accepted on March 14, 2022 for publication in The Astronomical Journal
References in corpus (7)
- The Gaia mission
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Formation of Regular Satellites from Ancient Massive Rings in the Solar System
- SORA: Stellar Occultation Reduction and Analysis
- On the contribution of PRIDE-JUICE to Jovian system ephemerides
- Rigorous treatment of barycentric stellar motion: Perspective and light-time effects in astrometric and radial velocity data
- New orbits of irregular satellites designed for the predictions of stellar occultations up to 2020, based on thousands of new observations
Cited by in corpus (5)
- Differential aperture photometry and digital coronagraphy with PRAIA
- Combining astrometry and JUICE -- Europa Clipper radio science to improve the ephemerides of the Galilean moons
- Spacecraft VLBI tracking to enhance stellar occultations astrometry of planetary satellites
- Kilometer-precise (UII) Umbriel physical properties from the multichord stellar occultation on 2020 September 21
- The 2021 mutual phenomena involving the Galilean satellites of Jupiter and the inner satellite Thebe