International audienceContext. Astrometry is less sensitive to stellar activity than the radial velocity technique when attempting to detect Earth mass planets in the habitable zone of solar-type stars. This is due to a smaller number of physical processes affecting the signal, and a larger ratio of the amplitude of the planetary signal to the stellar signal than with radial velocities. A few high-precision astrometric missions have therefore been proposed over the past two decades.Aims. We aim to re-estimate the detection limits in astrometry for the nearby stars which are the main targets proposed for the THEIA astrometric mission, which is the most elaborate mission to search for planets, and to characterise its performance on the fitted...
Context. Stellar activity strongly affects and may prevent the detection of Earth-mass planets in th...
International audience Aims: Stellar activity is a potentially important limitation to the detection...
International audience Aims: Stellar activity is a potentially important limitation to the detection...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
Context. Astrometry is less sensitive to stellar activity than the radial velocity technique when at...
Context. Astrometry is less sensitive to stellar activity than the radial velocity technique when at...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
Context. Stellar activity strongly affects and may prevent the detection of Earth-mass planets in th...
Context. Stellar activity strongly affects and may prevent the detection of Earth-mass planets in th...
International audience Aims: Stellar activity is a potentially important limitation to the detection...
International audience Aims: Stellar activity is a potentially important limitation to the detection...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
International audienceContext. Astrometry is less sensitive to stellar activity than the radial velo...
Context. Astrometry is less sensitive to stellar activity than the radial velocity technique when at...
Context. Astrometry is less sensitive to stellar activity than the radial velocity technique when at...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
International audienceContext. Stellar activity strongly affects and may prevent the detection of Ea...
Context. Stellar activity strongly affects and may prevent the detection of Earth-mass planets in th...
Context. Stellar activity strongly affects and may prevent the detection of Earth-mass planets in th...
International audience Aims: Stellar activity is a potentially important limitation to the detection...
International audience Aims: Stellar activity is a potentially important limitation to the detection...