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Gaia is a space mission currently measuring the five astrometric parameters as well as spectrophotometry of at least 1 billion stars to G = 20.7 mag with unprecedented precision. The sixth parameter in phase space (radial velocity) is also…

The European Space Agency's Gaia satellite was launched into orbit around L2 in December 2013 with a payload containing 106 large-format scientific CCDs. The primary goal of the mission is to repeatedly obtain high-precision astrometric and…

Since July 2014, the Gaia mission has been engaged in a high-spatial-resolution, time-resolved, precise, accurate astrometric, and photometric survey of the entire sky. Aims: We present the Gaia Science Alerts project, which has been in…

Instrumentation and Methods for Astrophysics · Physics 2021-08-18 S. T. Hodgkin , D. L. Harrison , E. Breedt , T. Wevers , G. Rixon , A. Delgado , A. Yoldas , Z. Kostrzewa-Rutkowska , Ł. Wyrzykowski , M. van Leeuwen , N. Blagorodnova , H. Campbell , D. Eappachen , M. Fraser , N. Ihanec , S. E. Koposov , K. Kruszyńska , G. Marton , K. A. Rybicki , A. G. A. Brown , P. W. Burgess , G. Busso , S. Cowell , F. De Angeli , C. Diener , D. W. Evans , G. Gilmore , G. Holland , P. G. Jonker , F. van Leeuwen , F. Mignard , P. J. Osborne , J. Portell , T. Prusti , P. J. Richards , M. Riello , G. M. Seabroke , N. A. Walton , Péter Ábrahám , G. Altavilla , S. G. Baker , U. Bastian , P. O'Brien , J. de Bruijne , T. Butterley , J. M. Carrasco , J. Castañeda , J. S. Clark , G. Clementini , C. M. Copperwheat , M. Cropper , G. Damljanovic , M. Davidson , C. J. Davis , M. Dennefeld , V. S. Dhillon , C. Dolding , M. Dominik , P. Esquej , L. Eyer , C. Fabricius , M. Fridman , D. Froebrich , N. Garralda , A. Gomboc , J. J. González-Vidal , R. Guerra , N. C. Hambly , L. K. Hardy , B. Holl , A. Hourihane , J. Japelj , D. A. Kann , C. Kiss , C. Knigge , U. Kolb , S. Komossa , Á. Kóspál , G. Kovács , M. Kun , G. Leto , F. Lewis , S. P. Littlefair , A. A. Mahabal , C. G. Mundell , Z. Nagy , D. Padeletti , L. Palaversa , A. Pigulski , M. L. Pretorius , W. van Reeven , V. A. R. M. Ribeiro , M. Roelens , N. Rowell , N. Schartel , A. Scholz , A. Schwope , B. M. Sipőcz , S. J. Smartt , M. D. Smith , I. Serraller , D. Steeghs , M. Sullivan , L. Szabados , E. Szegedi-Elek , P. Tisserand , L. Tomasella , S. van Velzen , P. A Whitelock , R. W. Wilson , D. R. Young

The third Gaia data release is published in two stages. The early part, Gaia EDR3, gives very precise astrometric and photometric properties for nearly two billion sources together with seven million radial velocities from Gaia DR2. The…

Context. Gaia Data Release 3 contains astrometry and photometry results for about 1.8 billion sources based on observations collected by the European Space Agency (ESA) Gaia satellite during the first 34 months of its operational phase (the…

With Gaia in orbit since December 2013 it is time to look at the future of fundamental astrometry and a time frame of 50 years is needed in this matter. A space mission with Gaia-like astrometric performance is required, but not necessarily…

Instrumentation and Methods for Astrophysics · Physics 2017-08-04 Erik Høg

In the context of the ESA M5 (medium mission) call we proposed a new satellite mission, Theia, based on relative astrometry and extreme precision to study the motion of very faint objects in the Universe. Theia is primarily designed to…

Instrumentation and Methods for Astrophysics · Physics 2017-07-06 The Theia Collaboration , Celine Boehm , Alberto Krone-Martins , Antonio Amorim , Guillem Anglada-Escude , Alexis Brandeker , Frederic Courbin , Torsten Ensslin , Antonio Falcao , Katherine Freese , Berry Holl , Lucas Labadie , Alain Leger , Fabien Malbet , Gary Mamon , Barbara McArthur , Alcione Mora , Michael Shao , Alessandro Sozzetti , Douglas Spolyar , Eva Villaver , Conrado Albertus , Stefano Bertone , Herve Bouy , Michael Boylan-Kolchin , Anthony Brown , Warren Brown , Vitor Cardoso , Laurent Chemin , Riccardo Claudi , Alexandre C. M. Correia , Mariateresa Crosta , Antoine Crouzier , Francis-Yan Cyr-Racine , Mario Damasso , Antonio da Silva , Melvyn Davies , Payel Das , Pratika Dayal , Miguel de Val-Borro , Antonaldo Diaferio , Adrienne Erickcek , Malcolm Fairbairn , Morgane Fortin , Malcolm Fridlund , Paulo Garcia , Oleg Gnedin , Ariel Goobar , Paulo Gordo , Renaud Goullioud , Nigel Hambly , Nathan Hara , David Hobbs , Erik Hog , Andrew Holland , Rodrigo Ibata , Carme Jordi , Sergei Klioner , Sergei Kopeikin , Thomas Lacroix , Jacques Laskar , Christophe Le Poncin-Lafitte , Xavier Luri , Subhabrata Majumdar , Valeri Makarov , Richard Massey , Bertrand Mennesson , Daniel Michalik , Andre Moitinho de Almeida , Ana Mourao , Leonidas Moustakas , Neil Murray , Matthew Muterspaugh , Micaela Oertel , Luisa Ostorero , Angeles Perez-Garcia , Imants Platais , Jordi Portell i de Mora , Andreas Quirrenbach , Lisa Randall , Justin Read , Eniko Regos , Barnes Rory , Krzysztof Rybicki , Pat Scott , Jean Schneider , Jakub Scholtz , Arnaud Siebert , Ismael Tereno , John Tomsick , Wesley Traub , Monica Valluri , Matt Walker , Nicholas Walton , Laura Watkins , Glenn White , Dafydd Wyn Evans , Lukasz Wyrzykowski , Rosemary Wyse

The Gaia mission is described, along with its scientific potential and its updated science perfomances. Although it is often described as a self-calibrated mission, Gaia still needs to tie part of its measurements to external scales (or to…

Instrumentation and Methods for Astrophysics · Physics 2012-07-09 E. Pancino

The expected accurate astrometric data from Gaia offer the opportunity and the obligation to exploitation by a second all-sky mission. Therefore a proposal was submitted to ESA in May 2013 for a Gaia-like mission in about twenty years. Two…

Instrumentation and Methods for Astrophysics · Physics 2014-08-15 Erik Høg , Jens Knude

The European Space Agency Gaia satellite was launched into orbit around L2 in December 2013. This ambitious mission has strict requirements on residual systematic errors resulting from instrumental corrections in order to meet a design goal…

The ESA global astrometry space mission Gaia has been monitoring the position of a billion stars since 2014. The analysis of such a massive dataset is challenging in terms of the data processing involved. In particular, the blind detection…

Earth and Planetary Astrophysics · Physics 2022-11-30 J. -B. Delisle , D. Ségransan

The first release of astrometric data from Gaia is expected in 2016. It will contain the mean stellar positions and magnitudes from the first year of observations. For more than 100 000 stars in common with the Hipparcos Catalogue it will…

Instrumentation and Methods for Astrophysics · Physics 2014-11-19 Daniel Michalik , Lennart Lindegren , David Hobbs , Uwe Lammers

In astronomy, we are witnessing an enormous increase in the number of source detections, precision, and diversity of measurements. Additionally, multi-epoch data is becoming the norm, making time-series analyses an important aspect of…

Instrumentation and Methods for Astrophysics · Physics 2019-11-22 Laurent Eyer , Maria Süveges , Joris De Ridder , Sara Regibo , Nami Mowlavi , Berry Holl , Lorenzo Rimoldini , Francois Bouchy

ESA's Gaia space astrometry mission is performing an all-sky survey of stellar objects. At the beginning of the nominal mission in July 2014, an operation scheme was adopted that enabled Gaia to routinely acquire observations of all stars…

Instrumentation and Methods for Astrophysics · Physics 2016-10-12 J. Sahlmann , J. Martín-Fleitas , A. Mora , A. Abreu , C. M. Crowley , E. Joliet

The Gaia spacecraft of the European Space Agency (ESA) has been securing observations of solar system objects (SSOs) since the beginning of its operations. Gaia Data Release 2 (DR2) contains the observations of a selected sample of 14,099…

Earth and Planetary Astrophysics · Physics 2018-08-15 Gaia Collaboration , F. Spoto , P. Tanga , F. Mignard , J. Berthier , B. Carry , A. Cellino

The second Gaia data release (DR2), contains very precise astrometric and photometric properties for more than one billion sources, astrophysical parameters for dozens of millions, radial velocities for millions, variability information for…

The ESA Cornerstone Mission GAIA, to be launched prior to 2012 and with a nominal lifetime of 5 years, will improve the accuracy of Hipparcos astrometry by more than two orders of magnitude. GAIA high-precision global astrometric…

Astrophysics · Physics 2015-06-24 M. G. Lattanzi , S. Casertano , A. Sozzetti , A. Spagna

Gaia's astrometric solution aims to determine at least five parameters for each star, together with appropriate estimates of their uncertainties and correlations. This requires at least five distinct observations per star. In the early data…

Instrumentation and Methods for Astrophysics · Physics 2015-10-28 Daniel Michalik , Lennart Lindegren , David Hobbs , Alexey G. Butkevich

The Gaia satellite, planned for launch by the European Space Agency (ESA) in 2013, is the next generation astrometry mission following Hipparcos. While mapping the whole sky, the Gaia space mission is expected to discover thousands of Solar…

Earth and Planetary Astrophysics · Physics 2012-12-04 M. Todd , P. Tanga , D. M. Coward , M. G. Zadnik

At the heart of a successful theory of galaxy formation must be a detailed physical understanding of the dissipational processes which form spiral galaxies. To what extent can we unravel the events that produced the Galaxy as we see it…

Astrophysics · Physics 2011-03-10 J. Bland-Hawthorn
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