Accès ouvert déclaré
2025
preprint
Euclid preparation: Expected constraints on initial conditions
F Finelli, Y Akrami, A. H. Andrews, M. Ballardini, S. Casas, D Karagiannis, Z. Sakr, J. Väliviita, George Alestas, N. Bartolo, Savvas Nesseris, D. Paoletti, D. Sapone, I. Tutusaus, Ana Achúcarro, G Cañas-Herrera, Jens Jasche, Guilhem Lavaux, B Altieri, A Amara, Luca Amendola, S Andreon, N. Auricchio, C. Baccigalupi, D Bagot, M. Baldi, S Bardelli, P Battaglia, A Biviano, E. Branchini, M Brescia, S. Camera, V. Capobianco, Chris Carbone, J. Carretero, M Castellano, G Castignani, S Cavuoti, A. Cimatti, G. Congedo, L. Conversi, Y. Copin, M. Cropper, A da Silva, H. Degaudenzi, S. de la Torre, G de Lucia, H. Dole, M. Douspis, F. Dubath, S. Dusini, S. Escoffier, M. Farina, R Farinelli, F Faustini, S Ferriol, P Fosalba, M. Frailis, E. Franceschi, M Fumana, S. Galeotta, K. George, B Gillis, C. Giocoli, J Gracia-Carpio, A. Grazian, Frank Grupp, W. Holmes, F. Hormuth, A. Hornstrup, K. Jahnkę, M Jhabvala, B Joachimi, E Keihänen, S. Kermiche, A Kiessling, B. Kubik, M Kümmel, M Kunz, H. Kurki‐Suonio, S. Ligori, V. Lindholm, I Lloro, G Mainetti, D Maino, E. Maiorano, O Mansutti, S Marcin, O Marggraf, M Martinelli, N. Martinet, F. Marulli, E Medinaceli, S. Mei, Y Mellier, M. Meneghetti, E. Merlin, G. Meylan, Antonio M. Mora, M. Moresco, L. Moscardini, C Neissner, C. Padilla, S Paltani, K Pedersen, V. Pettorino, S Pires, G Polenta, M Poncet, L. Pozzetti, F Raison, R. Rebolo, A Renzi, J Rhodes, G. Riccio, E. Romelli, M. Roncarelli, C. Rosset, R. P. Saglia, B Sartoris, M. Schirmer, T. Schrabback, A. Secroun, E Sefusatti, G. Seidel, M. Seiffert, S. Serrano, P. Šimon, C. Sirignano, L Stanco, J. Steinwagner, P. Tallada-Crespí, D Tavagnacco, I. Tereno, N Tessore, Sune Toft, R. Toledo-Moreo, F. Torradeflot, L Valenziano, T. Vassallo, A Veropalumbo, Y Wang, J Weller, A. Zacchei, G. Zamorani, V. Allevato, E. Bozzo, C. Burigana, R. Cabanac, M. Calabrese, A. Cappi, D. Di Ferdinando, L. Gabarra, J Martín-Fleitas, S Matthew, N. Mauri, A Pezzotta, M. Pöntinen, C. Porciani, I Risso, V Scottez, M. Sereno, M. Tenti, M Viel, M. Wiesmann, M. Archidiacono, F. Atrio‐Barandela, S. Àvila, A. Balaguera-Antolínez, Daniele Bertacca, M. Béthermin, Alain Blanchard, L Blot, H. Böhringer, S Borgani, S Bruton, Anthony Calabro, B. Camacho Quevedo, F Caro, T. Castro, F Cogato, Simon Conseil, S. Davini, F. De Paolis, G. Desprez, A. Díaz‐Sánchez, S. Di Domizio, Paola Dimauro, A Enia, A Finoguenov, A. Fontana, A. Franco, K. Ganga, J. García-Bellido, T Gasparetto, V Gautard, E Gaztanaga, F. Giacomini, F. Gianotti, G. Gozaliasl, A. Gruppuso, M Guidi, Shoubaneh Hemmati, C. Hernández-Monteagudo, H Hildebrandt, J Hjorth, Shahab Joudaki, Y Kang, V. Kansal, K. Kiiveri, Sergey Kruk, M. Lattanzi, L Legrand, M Lembo, Fabio Lepori, G Leroy, J Lesgourgues, Laura Leuzzi, J. F. Macías–Pérez, M. Magliocchetti, F. Mannucci, L. Maurin, M. Migliaccio, M Miluzio, Pierluigi Monaco, Claudio Moretti, G Morgante, S Nadathur, Kammila Naidoo, A Navarro-Alsina, L. Pagano, F Passalacqua, Ken Paterson, L Patrizii, A Pisani, D. Potter, S Quai, M. Radovich, P. Reimberg, G. Rodighiero, S Sacquegna, M Sahlén, E Sarpa, Aurel Schneider, D Sciotti, Elena Sellentin, K Tanidis, C. Tao, G. Testera, R Teyssier, S. Tosi, A. Troja, M. Tucci, C Valieri, A. Venhola, D. Vergani, Filippo Vernizzi, G Verza, P Vielzeuf
0Citations signalées, ce qui n’est pas une note de qualité
27Institutions déclarées
2Pays d’affiliation déclarés
Rattachement africain : fr, us.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The Euclid mission of the European Space Agency will deliver galaxy and cosmic shear surveys, which will be used to constrain initial conditions and statistics of primordial fluctuations. We present highlights for the Euclid scientific capability to test initial conditions beyond LCDM with the main probes, i.e. 3D galaxy clustering from the spectroscopic survey, the tomographic approach to 3x2pt statistics from photometric galaxy survey, and their combination. We provide Fisher forecasts from the combination of Euclid spectroscopic and photometric surveys for spatial curvature, running of the spectral index of the power spectrum of curvature perturbations, isocurvature perturbations, and primordial features. For the parameters of these models we also provide the combination of Euclid forecasts (pessimistic and optimistic) with current and future measurements of the cosmic microwave background (CMB) anisotropies., i.e. Planck, the Simons Observatory (SO), and CMB-S4. We provide Fisher forecasts for how the power spectrum and bispectrum from the Euclid spectroscopic survey will constrain the local, equilateral, and orthogonal shapes of primordial non-Gaussianity. We also review how Bayesian field-level inference of primordial non-Gaussianity can constrain local primordial non-Gaussianity. We show how Euclid, with its unique combination of the main probes, will provide the tightest constraints on low redshift to date. By targeting a markedly different range in redshift and scale, Euclid's expected uncertainties are complementary to those obtained by CMB primary anisotropy, returning the tightest combined constraints on the physics of the early Universe.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Les sujets associés
Galaxies: Formation, Evolution, PhenomenaCosmology and Gravitation TheoriesAstronomy and Astrophysical Research