Using the Sun to estimate Earth-like planets detection capabilities. III. Impact of spots and plages on astrometric detection
arXiv:1101.2512 · doi:10.1051/0004-6361/201016354
Abstract
Stellar activity is a potential important limitation to the detection of low mass extrasolar planets with indirect methods (RV, photometry, astrometry). In previous papers, using the Sun as a proxy, we investigated the impact of stellar activity (spots, plages, convection) on the detectability of an Earth-mass planet in the habitable zone (HZ) of solar-type stars with RV techniques. We extend here the detectability study to the case of astrometry. We used the sunspot and plages properties recorded over one solar cycle to infer the astrometric variations that a Sun-like star seen edge-on, 10 pc away, would exhibit, if covered by such spots/bright structures. We compare the signal to the one expected from the astrometric wobble (0.3 μas) of such a star surrounded by a one Earth-mass planet in the HZ. We also briefly investigate higher levels of activity. The activity-induced astrometric signal along the equatorial plane has an amplitude of typ. less than 0.2 μas (rms=0.07 μas), smaller than the one expected from an Earth-mass planet at 1 AU. Hence, for this level of activity, the detectability is governed by the instrumental precision rather than the activity. We show that for instance a one Earth-mass planet at 1 AU would be detected with a monthly visit during less than 5 years and an instrumental precision of 0.8 μas. A level of activity 5 times higher would still allow such a detection with a precision of 0.35 μas. We conclude that astrometry is an attractive approach to search for such planets around solar type stars with most levels of stellar activity.
Letter accepted by A&A
References in corpus (6)
- Using the Sun to estimate Earth-like planets detection capabilities II. Impact of plages
- Patterns of photometric and chromospheric variation among Sun-like stars: A 20-year perspective
- Using the Sun to estimate Earth-like planets detection capabilities.I. Impact of cold spots
- A spectroscopy study of nearby late-type stars, possible members of stellar kinematic groups
- Detectability of Terrestrial Planets in Multi-Planet Systems: Preliminary Report
- Astrometric jitter of the sun as a star
Cited by in corpus (22)
- Instrumentation for the detection and characterization of exoplanets
- Using the Sun to estimate Earth-like planets detection capabilities. V. Parameterizing the impact of solar activity components on radial velocities
- On the Feasibility of Intense Radial Velocity Surveys for Earth-twin Discoveries
- A Frequency Comb calibrated Solar Atlas
- High precision astrometry mission for the detection and characterization of nearby habitable planetary systems with the Nearby Earth Astrometric Telescope (NEAT)
- Exoplanet Imitators: A test of stellar activity behavior in radial velocity signals
- Faint objects in motion: the new frontier of high precision astrometry
- Activity time series of old stars from late F to early K. I. Simulating radial velocity, astrometry, photometry, and chromospheric emission
- A detector interferometric calibration experiment for high precision astrometry
- Predictions of Astrometric Jitter for Sun-like Stars. II. Dependence on Inclination, Metallicity, and Active-Region Nesting
- Impact of ηearth on the capabilities of affordable space missions to detect biosignatures on extrasolar planets
- Activity time series of old stars from late F to early K. V. Effect on exoplanet detectability with high-precision astrometry
- A new estimation of astrometric exoplanet detection limits in the habitable zone around nearby stars
- Activity time series of old stars from late F to early K VI. Exoplanet mass characterisation and detectability in radial velocity
- Closeby Habitable Exoplanet Survey (CHES). I. Astrometric Noise and Planetary Detection Efficiency due to Stellar Spots and Faculae
- Predictions of astrometric jitter for Sun-like stars. I. The model and its application to the Sun as seen from the ecliptic
- Effects of disc asymmetries on astrometric measurements - Can they mimic planets?
- Multiwavelength Mitigation of Stellar Activity in Astrometric Planet Detection
- Future Astrometric Space Missions for Exoplanet Science
- SOAPv4: A new step toward modeling stellar signatures in exoplanet research
- The Potential of Detecting Nearby Terrestrial Planets in the HZ with Different Methods
- Astrometric exoplanet detection survives solar-like stellar contamination