Euclid preparation VII. Forecast validation for Euclid cosmological probes
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Blanchard, A.
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Camera, S.
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Carbone, C.
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Cardone, V. F.
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Casas, S.
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Clesse, S.
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Ilic, S.
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Kilbinger, M.
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Kitching, T.
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Kunz, M.
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Lacasa, F.
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Linder, E.
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Majerotto, E.
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Markovic, K.
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Martinelli, M.
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Pettorino, V.
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Pourtsidou, A.
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Sakr, Z.
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Sánchez, A. G.
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Sapone, D.
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Tutusaus, I.
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Yahia-Cherif, S.
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Yankelevich, V.
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Andreon, S.
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Aussel, H.
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Balaguera-Antolinez, A.
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Baldi, M.
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Bardelli, S.
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Bender, R.
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Biviano, A.
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Bonino, D.
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Boucaud, A.
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Bozzo, E.
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Branchini, E.
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Brau Nogue, S.
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Brescia, M.
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Brinchmann, J.
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Burigana, C.
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Cabanac, R.
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Capobianco, V.
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Cappi, A.
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Carretero, J.
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Carvalho, C.S.
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Casas, R.
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Castander, F. J.
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Castellano, M.
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Cavuoti, S.
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Cimatti, A.
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Cledassou, R.
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Colodro Conde, C.
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Congedo, G.
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Conselice, C.J.
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Conversi, L.
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Copin, Y.
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Corcione, L.
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Coupon, J.
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Courtois, H. M.
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Cropper, M.
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Da Silva, A.
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de la Torre, S.
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Di Ferdinando, D.
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Dubath, F.
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Ducret, F.
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Duncan, C. A. J.
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Dupac, X.
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Dusini, S.
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Fabbian, G.
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Fabricius, M.
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Farrens, S.
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Fosalba, P.
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Fotopoulou, S.
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Fourmanoit, N.
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Frailis, M.
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Franceschi, E.
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Franzetti, P.
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Fumana, M.
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Galeotta, S.
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Gillard, W.
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Gillis, B.
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Giocoli, C.
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Gómez-Álvarez, P.
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Gracia Carpio, J.
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Grupp, F.
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Guzzo, L.
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Hoekstra, H.
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Hormuth, F.
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Israel, H.
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Jahnke, K.
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Keihanen, E.
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Kermiche, S.
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Kirkpatrick, C. C.
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Kohley, R.
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Kubik, B.
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Kurki-Suonio, H.
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Ligori, S.
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Lilje, P. B.
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Lloro, I.
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Maino, D.
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Maiorano, E.
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Marggraf, O.
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Martinet, N.
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Marulli, F.
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Massey, R.
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Medinaceli, E.
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Mei, S.
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Mellier, Y.
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Metcalf, B.
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Metge, J.J.
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Meylan, G.
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Moresco, M.
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Moscardini, L.
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Munari, E.
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Nichol, R. C.
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Niemi, S.
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Nucita, A.A.
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Padilla, C.
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Paltani, S.
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Pasian, F.
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Percival, W. J.
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Pires, S.
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Polenta, G.
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Poncet, M.
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Pozzetti, L.
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Racca, G.D.
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Raison, F.
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Renzi, A.
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Rhodes, J.
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Romelli, E.
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Roncarelli, M.
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Rossetti, E.
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Saglia, R.
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Schneider, P.
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Scottez, V.
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Secroun, A.
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Sirri, G.
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Stanco, L.
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Starck, J. L.
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Sureau, F.
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Tallada Crespi, P.
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Tavagnacco, D.
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Taylor, A. N.
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Tenti, M.
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Tereno, I.
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Toledo Moreo, R.
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Torradeflot, F.
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Valenziano, L.
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Vassallo, T.
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Kleijn, G. A. Verdoes
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Viel, M.
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Wang, Y.
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Zacchei, A.
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Zoubian, J.
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Zucca, E.
Admission date
dc.date.accessioned
2021-03-31T19:27:28Z
Available date
dc.date.available
2021-03-31T19:27:28Z
Publication date
dc.date.issued
2020
Cita de ítem
dc.identifier.citation
Astronomy & Astrophysics (2020) 642: A191
es_ES
Identifier
dc.identifier.other
10.1051/0004-6361/202038071
Identifier
dc.identifier.uri
https://repositorio.uchile.cl/handle/2250/178889
Abstract
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Aims. The Euclid space telescope will measure the shapes and redshifts of galaxies to reconstruct the expansion history of the Universe and the growth of cosmic structures. The estimation of the expected performance of the experiment, in terms of predicted constraints on cosmological parameters, has so far relied on various individual methodologies and numerical implementations, which were developed for different observational probes and for the combination thereof. In this paper we present validated forecasts, which combine both theoretical and observational ingredients for different cosmological probes. This work is presented to provide the community with reliable numerical codes and methods for Euclid cosmological forecasts.Methods. We describe in detail the methods adopted for Fisher matrix forecasts, which were applied to galaxy clustering, weak lensing, and the combination thereof. We estimated the required accuracy for Euclid forecasts and outline a methodology for their development. We then compare and improve different numerical implementations, reaching uncertainties on the errors of cosmological parameters that are less than the required precision in all cases. Furthermore, we provide details on the validated implementations, some of which are made publicly available, in different programming languages, together with a reference training-set of input and output matrices for a set of specific models. These can be used by the reader to validate their own implementations if required.Results. We present new cosmological forecasts for Euclid. We find that results depend on the specific cosmological model and remaining freedom in each setting, for example flat or non-flat spatial cosmologies, or different cuts at non-linear scales. The numerical implementations are now reliable for these settings. We present the results for an optimistic and a pessimistic choice for these types of settings. We demonstrate that the impact of cross-correlations is particularly relevant for models beyond a cosmological constant and may allow us to increase the dark energy figure of merit by at least a factor of three.
es_ES
Patrocinador
dc.description.sponsorship
Academy of Finland
European Commission
Agenzia Spaziale Italiana (ASI)
Belgian Federal Science Policy Office
Canadian Euclid Consortium
Centre National D'etudes Spatiales
Deutsches Zentrum fur Luft-and Raumfahrt
Danish Space Research Institute
Fundacao para a Cienca e a Tecnologia
Spanish Government
National Aeronautics & Space Administration (NASA)
80NM0018D0004
Netherlandse Onderzoekschool Voor Astronomie
Norvegian Space Center
Romanian Space Agency
State Secretariat for Education, Research and Innovation (SERI) at the Swiss Space O ffice (SSO)
United Kingdom Space Agency
Ministry of Education, Universities and Research (MIUR)
Ministry of Education, Universities and Research (MIUR)
L. 232/2016
European Research Council through the Darklight Advanced Research Grant
291521
Ministry of Education, Universities and Research (MIUR)
Centre National D'etudes Spatiales
Fonds de la Recherche Scientifique - FNRS
Swiss National Science Foundation (SNSF)
European Commission
NASA ROSES grant
12-EUCLID12-0004
UK Science & Technology Facilities Council
ST/N000668/1
ST/S000437/1
UK Space Agency
ST/N00180X/1
D-ITP consortium, a program of the NWO - the OCW
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT
1200171
Spanish Ministry of Science, Innovation and Universities
ESP2017-89838-C3-1-R
H2020 programme of the European Commission
776247
German Research Foundation (DFG)
Transregio 33
International Max Planck Research School for Astronomy and Astrophysics at the University of Bonn
International Max Planck Research School for Astronomy and Astrophysics at the University of Cologne
Bonn-Cologne Graduate School for Physics and Astronomy
Royal Society of London
European Research Council (ERC)
617656