Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense optical QSO-based celestial reference frame which will need to be linked to the International Celestial Reference Frame (ICRF; the IAU fundamental frame), with the highest accuracy. However, it has been found that only 10% of the ICRF sources (70 sources) are suitable to establish this link. The remaining sources are not useful either because they are not bright enough at optical wavelengths or because they have significant extended radio emission which precludes reaching the highest astrometric accuracy. Aims: In order to improve the accuracy of this alignment, we have developed a program of VLBI observations based on three steps to detect, ...
The European space astrometry mission Gaia will construct a dense optical QSO-based celestial refere...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...
International audienceContext. The European space astrometry mission Gaia, to be launched by 2012, w...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
International audienceContext. The European space astrometry mission Gaia will construct a dense opt...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The European space astrometry mission Gaia will construct a dense optical QSO-based celestial refere...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...
International audienceContext. The European space astrometry mission Gaia, to be launched by 2012, w...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
International audienceContext. The European space astrometry mission Gaia will construct a dense opt...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
The European space astrometry mission Gaia will construct a dense optical QSO-based celestial refere...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...