Gravitation And the Universe from large Scale-Structures: The GAUSS mission concept
Abstract
Today, thanks in particular to the results of the ESA Planck mission, the concordance cosmological model appears to be the most robust to describe the evolution and content of the Universe from its early to late times. It summarizes the evolution of matter, made mainly of dark matter, from the primordial fluctuations generated by inflation around second after the Big-Bang to galaxies and clusters of galaxies, 13.8 billion years later, and the evolution of the expansion of space, with a relative slowdown in the matter-dominated era and, since a few billion years, an acceleration powered by dark energy. But we are far from knowing the pillars of this model which are inflation, dark matter and dark energy. Comprehending these fundamental questions requires a detailed mapping of our observable Universe over the whole of cosmic time. The relic radiation provides the starting point and galaxies draw the cosmic web. JAXA's LiteBIRD mission will map the beginning of our Universe with a crucial test for inflation (its primordial gravity waves), and the ESA Euclid mission will map the most recent half part, crucial for dark energy. The mission concept, described in this White Paper, GAUSS, aims at being a mission to fully map the cosmic web up to the reionization era, linking early and late evolution, to tackle and disentangle the crucial degeneracies persisting after the Euclid era between dark matter and inflation properties, dark energy, structure growth and gravitation at large scale.
Keywords
Cite
@article{arxiv.2102.03931,
title = {Gravitation And the Universe from large Scale-Structures: The GAUSS mission concept},
author = {Alain Blanchard and Aubourg Éric and Philippe Brax and Francisco J. Castender and Sandrine Codis and Stéphanie Escoffier and Fabien Dournac and Agnès Ferté and Fabio Finelli and Pablo Fosalba and Emmanuel Gangler and A Gontcho Satya Gontcho and Adam Hawken and Stéphane Ilić and Jean-Paul Kneib and Martin Kunz and Guilhem Lavaux and Olivier Le Fèvre and Julien Lesgourgues and Yannick Mellier and Jérémy Neveu and Yann Rasera and Cécile Renault and Marina Ricci and Ziad Sakr and Norma G. Sanchez and Isaac Tutusaus and Safir Yahia-Cherif},
journal= {arXiv preprint arXiv:2102.03931},
year = {2021}
}
Comments
24 pages, 3 figures, ESA Voyage2050 White Paper