International audienceThe space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame. For consistency between optical and radio positions, it will be important to align the Gaia and VLBI frames with the highest accuracy. However, the number of quasars that are bright in optical wavelength (for the best position accuracy with Gaia), that have a compact core (to be detectable on VLBI scales), and that do not exhibit complex structures (to ensure a good astrometric quality), was found to be limited. It was hence realized that the densification of the list of such objects was necessary. Accordingly, we initiated a multi-step VLBI observational project, dedicated to finding additional suitable radio sources ...
The European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The Gaia space astrometric mission, to be launched by 2012, will survey 500,000 QSOs brighter than m...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
International audienceThe space astrometry mission Gaia will construct a dense optical QSO-based cel...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
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 space astrometry mission Gaia will construct a dense optical QSO-based cel...
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 European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The Gaia space astrometric mission, to be launched by 2012, will survey 500,000 QSOs brighter than m...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
International audienceThe space astrometry mission Gaia will construct a dense optical QSO-based cel...
The space astrometry mission Gaia will construct a dense optical QSO-based celestial reference frame...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
Context. The European space astrometry mission Gaia, to be launched by 2012, will construct a dense ...
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 space astrometry mission Gaia will construct a dense optical QSO-based cel...
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 European space astrometric mission Gaia to be launched in 2013 will produce a QSO - based celest...
International audienceThe European space astrometry mission Gaia will construct a dense optical cele...
The Gaia space astrometric mission, to be launched by 2012, will survey 500,000 QSOs brighter than m...