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Gaia spreads its wings
7 December 2011 - ESA
Gaia spreads its wings
: the spacecraft’s sunshield has been deployed for the first time.
Gaia’s sunshield is an essential component of the mission. It keeps Gaia in shadow, maintaining the scientific instruments at a constant temperature of around -110°C.
The sunshield is about 10 m across, which is too large for the launch vehicle fairing, so it has been built with a dozen folding panels that will be deployed after launch.
Since the sunshield is designed for the weightlessness of space, it cannot support its own weight on Earth. So, during this test at Astrium in Toulouse, France, support cables and counterweights simulated weightless conditions and provided a realistic trial.
The support system can be seen in the video as the white framework that surrounds Gaia.
The video is an edited, time-lapse sequence of the deployment. In real time, it takes about 20 minutes. As the sunshield opens, the main spacecraft comes into view.
During its expected lifetime of five years, Gaia will take a census of a billion stars - roughly 1% of all of the stars in our Galaxy. It will observe each star about 70 times, each time recording its brightness, colour and, most importantly, its position.
By comparing Gaia’s series of exquisite observations, astronomers will precisely measure the apparent movement of each star across the heavens, enabling them to determine its distance and true motion through space.
The unprecedented results will allow astronomers to trace the history of the Milky Way.
Before the 2013 launch, some of the solar array panels needed to generate power will be fixed to the sunshield. The rest will be placed on the bottom of the spacecraft.
The Gaia sunshield was developed and manufactured by Sener in Spain. The satellite’s prime contractor is Astrium SAS in France.
Gaia to lift off from Europe’s Spaceport on a Soyuz launcher ESA selects prime contractor for Gaia astrometry mission Most extensive mapping of Milky Way a step closer Keeping ESA’s ’lady of space’ cool The billion-pixel camera Mapping the Galaxy, and watching our backyard
Gaia’s sunshield is an essential component of the mission. It keeps Gaia in shadow, maintaining the scientific instruments at a constant temperature of around -110°C.
The sunshield is about 10 m across, which is too large for the launch vehicle fairing, so it has been built with a dozen folding panels that will be deployed after launch.
Since the sunshield is designed for the weightlessness of space, it cannot support its own weight on Earth. So, during this test at Astrium in Toulouse, France, support cables and counterweights simulated weightless conditions and provided a realistic trial.
The support system can be seen in the video as the white framework that surrounds Gaia.
The video is an edited, time-lapse sequence of the deployment. In real time, it takes about 20 minutes. As the sunshield opens, the main spacecraft comes into view.
During its expected lifetime of five years, Gaia will take a census of a billion stars - roughly 1% of all of the stars in our Galaxy. It will observe each star about 70 times, each time recording its brightness, colour and, most importantly, its position.
By comparing Gaia’s series of exquisite observations, astronomers will precisely measure the apparent movement of each star across the heavens, enabling them to determine its distance and true motion through space.
The unprecedented results will allow astronomers to trace the history of the Milky Way.
Before the 2013 launch, some of the solar array panels needed to generate power will be fixed to the sunshield. The rest will be placed on the bottom of the spacecraft.
The Gaia sunshield was developed and manufactured by Sener in Spain. The satellite’s prime contractor is Astrium SAS in France.
Gaia to lift off from Europe’s Spaceport on a Soyuz launcher ESA selects prime contractor for Gaia astrometry mission Most extensive mapping of Milky Way a step closer Keeping ESA’s ’lady of space’ cool The billion-pixel camera Mapping the Galaxy, and watching our backyard
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