Accès ouvert déclaré
2025
preprint
Euclid preparation. XCVI. Cosmology Likelihood for Observables in Euclid (CLOE). 3. Inference and Forecasts
G Cañas-Herrera, L Blot, Marco Bonici, S Camera, P. Carrilho, S Casas, S. Davini, S. Di Domizio, S Farrens, S. Gouyou Beauchamps, S. Ilić, Shahab Joudaki, Frank C. Keil, M. Martinelli, Chiara Moretti, V Pettorino, A Pezzotta, Z Sakr, D Sciotti, K Tanidis, I. Tutusaus, Virginia Ajani, M. Crocce, Alessandra Fumagalli, L Legrand, M Lembo, D. Navarro Girones, A Nouri-Zonoz, S Pamuk, Alkistis Pourtsidou, Maria Tsedrik, J. Bel, J. Claramunt Gonzalez, M. Kilbinger, A. Porredon, D. Sapone, E. Sellentin, N Tessore, B. Altieri, A Amara, Luca Amendola, S Andreon, N Auricchio, C. Baccigalupi, M Baldi, S Bardelli, R. Bender, D. Bonino, E. Branchini, M. Brescia, J Brinchmann, V. Capobianco, J. Carretero, M Castellano, G. Castignani, S. Cavuoti, A. Cimatti, C Colodro-Conde, G. Congedo, L. Conversi, F. Courbin, M. Cropper, A da Silva, H Degaudenzi, S. de la Torre, G. De Lucia, F Dubath, X Dupac, S Dusini, S. Escoffier, Marcelo Farina, F Faustini, S Ferriol, F Finelli, P Fosalba, S. Fotopoulou, N. Fourmanoit, M. Frailis, E. Franceschi, S. Galeotta, Koshy George, W Gillard, B Gillis, P Gómez-Álvarez, J Gracia-Carpio, A. Grazian, F Grupp, L. Guzzo, H. Hoekstra, W. Holmes, I. Hook, F. Hormuth, A. Hornstrup, P. Hudelot, M Jhabvala, Benjamin Joachimi, E. Keihänen, S. Kermiche, A. Kiessling, B. Kubik, K Kuijken, M Kümmel, M. Kunz, H Kurki-Suonio, O Lahav, R. Laureijs, S Ligori, V. Lindholm, I. Lloro, G Mainetti, D. Maino, E. Maiorano, O Mansutti, S Marcin, O. Marggraf, K. Markovič, N. Martinet, R Massey, E. Medinaceli, M Melchior, Y Mellier, M. Meneghetti, E Merlin, G. Meylan, Araceli Mora Enguídanos, M. Moresco, L. Moscardini, C. Neissner, C. Padilla, F Pasian, K. Pedersen, S. Pires, G. Polenta, Marion Poncet, F Raison, R. Rébolo, A. Renzi, J Rhodes, Giuseppe Riccio, E. Romelli, M. Roncarelli, R. Saglia, B. Sartoris, P. Schneider, T. Schrabback, A Secroun, E. Sefusatti, G Seidel, M. D. Seiffert, S Serrano, P. Šimon, C. Sirignano, A. Spurio Mancini, L Stanco, P. Tallada-Crespí, D. Tavagnacco, I. Tereno, Sune Toft, R. Toledo-Moreo, F Torradeflot, L Valenziano, J. Väliviita, A Veropalumbo, Y Wang, J Weller, G. Zamorani, E. Zucca, M Ballardini, M Bolzonella, A. Boucaud, E. Bozzo, C. Burigana, R Cabanac, M. Calabrese, P Casenove, D. Di Ferdinando, L. Gabarra, Nuria Mauri, M. Pöntinen, C Porciani, M. Tenti, M Viel, M. Wiesmann, Y. Akrami, S Alvi, S Anselmi, Maria Archidiacono, F. Atrio‐Barandela, A. Balaguera-Antolínez, M. Béthermin, Alain Blanchard, S. Borgani, S Bruton, A Calabrò, B. Camacho Quevedo, F Caro, T. Castro, F Cogato, Simon Conseil, S. Contarini, O Cucciati, F. De Paolis, G. Desprez, A. Díaz‐Sánchez, Paola Dimauro, A Enia, Yunting Fang, A. Finoguenov, Alvaro E. Cordero-Franco, K. Ganga, J. García-Bellido, T Gasparetto, V Gautard, R. Gavazzi, E. Gaztañaga, F. Giacomini, G. Gozaliasl, M Guidi, Andrew Hall, Shoubaneh Hemmati, C. Hernández-Monteagudo, H Hildebrandt, J. Hjorth, Yongshui Kang, V. Kansal, D Karagiannis, K Kiiveri, Sergey Kruk, F. Lacasa, M. Lattanzi, Francesca Lepori, G Leroy, J Lesgourgues, L. Leuzzi, A. Loureiro, J. F. Macías–Pérez, G. Maggio, M. Magliocchetti, F. Mannucci, J Martín-Fleitas, L. Maurin, M. Migliaccio, M Miluzio, P Monaco, A Montoro, G. Morgante, Cherry A. Murray, S. Nadathur, K Naidoo, A Navarro-Alsina, Savvas Nesseris, Luca Pagano, F Passalacqua, K Paterson, L Patrizii, Alice Pisani, D. Potter, S Quai, M. Radovich, P. Reimberg, I Risso, G. Rodighiero, S Sacquegna, M Sahlén, E Sarpa, Joop Schaye, Aurel Schneider, Margaret E. Sereno, A. Silvestri, Joachim Stadel, C. Tao, G. Testera, Romain Teyssier, S. Tosi, A. Troja, M. Tucci, C Valieri, A. Venhola, D. Vergani, Filippo Vernizzi, G Verza
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26Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : fr.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The Euclid mission aims to measure the positions, shapes, and redshifts of over a billion galaxies to provide unprecedented constraints on the nature of dark matter and dark energy. Achieving this goal requires a continuous reassessment of the mission's scientific performance, particularly in terms of its ability to constrain cosmological parameters, as our understanding of how to model large-scale structure observables improves. In this study, we present the first scientific forecasts using CLOE (Cosmology Likelihood for Observables in Euclid), a dedicated Euclid cosmological pipeline developed to support this endeavour. Using advanced Bayesian inference techniques applied to synthetic Euclid-like data, we sample the posterior distribution of cosmological and nuisance parameters across a variety of cosmological models and Euclid primary probes: cosmic shear, angular photometric galaxy clustering, galaxy-galaxy lensing, and spectroscopic galaxy clustering. We validate the capability of CLOE to produce reliable cosmological forecasts, showcasing Euclid's potential to achieve a figure of merit for the dark energy parameters $w_0$ and $w_a$ exceeding 400 when combining all primary probes. Furthermore, we illustrate the behaviour of the posterior probability distribution of the parameters of interest given different priors and scale cuts. Finally, we emphasise the importance of addressing computational challenges, proposing further exploration of innovative data science techniques to efficiently navigate the Euclid high-dimensional parameter space in upcoming cosmological data releases.
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Les sujets associés
Galaxies: Formation, Evolution, PhenomenaAstronomy and Astrophysical ResearchGaussian Processes and Bayesian Inference