Space-borne global astrometric surveys: the hunt for extra-solar planets
arXiv:astro-ph/0005024 · doi:10.1046/j.1365-8711.2000.03637.x
Abstract
The proposed global astrometry mission {\it GAIA}, recently recommended within the context of ESA's Horizon 2000 Plus long-term scientific program, appears capable of surveying the solar neighborhood within 200 pc for the astrometric signatures of planets around stars down to the magnitude limit of =17 mag, which includes late M dwarfs at 100 pc. Realistic end-to-end simulations of the GAIA global astrometric measurements have yielded first quantitative estimates of the sensitivity to planetary perturbations and of the ability to measure their orbital parameters. Single Jupiter-mass planets around normal solar-type stars appear detectable up to 150 pc (12 mag) with probabilities 50 per cent for orbital periods between 2.5 and 8 years, and their orbital parameters measured with better than 30 per cent accuracy to about 100 pc. Jupiter-like objects (same mass and period as our giant planet) are found with similar probabilities up to 100 pc.These first experiments indicate that the {\it GAIA} results would constitute an important addition to those which will come from the other ongoing and planned planet-search programs. These data combined would provide a formidable testing ground on which to confront theories of planetary formation and evolution.
13 pages, 10 figures, uses mn.sty, accepted by MNRAS
References in corpus (1)
Cited by in corpus (30)
- GAIA: Composition, Formation and Evolution of the Galaxy
- Astrometric exoplanet detection with Gaia
- Predictions for the frequency and orbital radii of massive extrasolar planets
- Extra-Solar Planets
- Double-blind test program for astrometric planet detection with Gaia
- Gaia DR3 astrometric orbit determination with Markov Chain Monte Carlo and Genetic Algorithms. Systems with stellar, substellar, and planetary mass companions
- Astrometric Detection of Giant Planets Around Nearby M Dwarfs: The Gaia Potential
- Astrometric Methods and Instrumentation to Identify and Characterize Extrasolar Planets: A Review
- Limits on the Abundance of Galactic Planets From Five Years of Planet Observations
- Weighing the Darkness: Astrometric Mass Measurement of Hidden Stellar Companions using Gaia
- Astrometric Detection of Terrestrial Planets in the Habitable Zones of Nearby Stars with SIM PlanetQuest
- Detection and measurement of planetary systems with GAIA
- Long-lived Chaotic Orbital Evolution of Exoplanets in Mean Motion Resonances with Mutual Inclinations
- Mass estimates for visual binaries with incomplete orbits
- Probability of Detecting a Planetary Companion during a Microlensing Event
- Limits of ultra-high-precision optical astrometry: Stellar surface structures
- Narrow-Angle Astrometry with the Space Interferometry Mission: The Search for Extra-solar Planets. I. Detection and Characterization of Single Planets
- "Orphan" afterglows in the Universal Structured Jet Model for gamma-ray bursts
- Narrow-Angle Astrometry with the Space Interferometry Mission: The Search for Extra-Solar Planets. II. Detection and Characterization of Planetary Systems
- Choice of Observing Schedules for Astrometric Planet Searches
- On the driver of relativistic effects strength in Seyfert galaxies
- Precision and accuracy of the orbital parameters derived from 2D & 1D space observations of visual or astrometric binaries
- Interpreting the M22 Spike Events
- Astrometric detectability of systems with unseen companions: effects of the Earth orbital motion
- On the follow-up efforts of long-period transiting planet candidates detected with Gaia astrometry
- The Short Term Stability of a Simulated Differential Astrometric Reference Frame in the Gaia era
- The GAIA Astrometric Survey of the Solar Neighborhood and its Contribution to the Target Database for DARWIN/TPF
- Detecting planet pairs in mean motion resonances via astrometry method
- Gaia: The Astrometry Revolution
- Testing Planet Formation Models with Gaia as Astrometry