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Euclid preparation: LIX. Angular power spectra from discrete observations

Title: Euclid preparation: LIX. Angular power spectra from discrete observations
Authors: Tessore, N; Joachimi, B; Loureiro, A; Hall, A; Cañas-Herrera, G; Tutusaus, I; Jeffrey, N; Naidoo, K; McEwen, JD; Amara, A; Andreon, S; Auricchio, N; Baccigalupi, C; Baldi, M; Bardelli, S; Bernardeau, F; Bonino, D; Branchini, E; Brescia, M; Brinchmann, J; Caillat, A; Camera, S; Capobianco, V; Carbone, C; Cardone, VF; Carretero, J; Casas, S; Castellano, M; Castignani, G; Cavuoti, S; Cimatti, A; Colodro-Conde, C; Congedo, G; Conselice, CJ; Conversi, L; Copin, Y; Courbin, F; Courtois, HM; Cropper, M; Da Silva, A; Degaudenzi, H; De Lucia, G; Dinis, J; Dubath, F; Duncan, CAJ; Dupac, X; Dusini, S; Farina, M; Farrens, S; Faustini, F; Ferriol, S; Frailis, M; Franceschi, E; Fumana, M; Galeotta, S; Gillard, W; Gillis, B; Giocoli, C; Gómez-Alvarez, P; Grazian, A; Grupp, F; Guzzo, L; Haugan, SVH; Hoekstra, H; Holmes, W; Hormuth, F; Hornstrup, A; Hudelot, P; Jahnke, K; Jhabvala, M; Keihänen, E; Kermiche, S; Kiessling, A; Kubik, B; Kümmel, M; Kunz, M; Kurki-Suonio, H; Ligori, S; Lilje, PB; Lindholm, V; Lloro, I; Mainetti, G; Maiorano, E; Mansutti, O; Marggraf, O; Martinelli, M; Martinet, N; Marulli, F; Massey, R; Medinaceli, E; Mei, S; Melchior, M; Mellier, Y; Meneghetti, M; Merlin, E; Meylan, G; Mohr, JJ; Moresco, M; Morin, B; Moscardini, L; Munari, E; Nakajima, R; Niemi, S-M; Padilla, C; Paltani, S; Pasian, F; Pedersen, K; Percival, WJ; Pettorino, V; Pires, S; Polenta, G; Poncet, M; Popa, LA; Raison, F; Renzi, A; Rhodes, J; Riccio, G; Romelli, E; Roncarelli, M; Rossetti, E; Saglia, R; Sakr, Z; Sánchez, AG; Sapone, D; Sartoris, B; Schirmer, M; Schneider, P; Schrabback, T; Secroun, A; Seidel, G; Seiffert, M; Serrano, S; Sirignano, C; Sirri, G; Stanco, L; Steinwagner, J; Tallada-Crespí, P; Taylor, AN; Tereno, I; Toledo-Moreo, R; Torradeflot, F; Valenziano, L; Vassallo, T; Wang, Y; Weller, J; Zamorani, G; Zucca, E; Biviano, A; Bolzonella, M; Boucaud, A; Bozzo, E; Burigana, C; Calabrese, M; Di Ferdinando, D; Escartin Vigo, JA; Finelli, F; Gracia-Carpio, J; Matthew, S; Mauri, N; Pezzotta, A; Pöntinen, M; Scottez, V; Spurio Mancini, A; Tenti, M; Viel, M; Wiesmann, M; Akrami, Y; Anselmi, S; Archidiacono, M; Atrio-Barandela, F; Balaguera-Antolinez, A; Ballardini, M; Benielli, D; Blanchard, A; Blot, L; Böhringer, H; Borgani, S; Bruton, S; Cabanac, R; Calabro, A; Camacho Quevedo, B; Cappi, A; Caro, F; Carvalho, CS; Castro, T; Chambers, KC; Cooray, AR; de la Torre, S; Desprez, G; Díaz-Sánchez, A; Di Domizio, S; Dole, H; Escoffier, S; Ferrari, AG; Ferreira, PG; Ferrero, I; Finoguenov, A; Fontana, A; Fornari, F; Gabarra, L; Ganga, K; García-Bellido, J; Gasparetto, T; Gaztanaga, E; Giacomini, F; Gianotti, F; Gozaliasl, G; Gutierrez, CM; Hartley, WG; Hildebrandt, H; Hjorth, J; Jimenez Muñoz, A; Joudaki, S; Kajava, JJE; Kansal, V; Karagiannis, D; Kirkpatrick, CC; Kruk, S; Lacasa, F; Lattanzi, M; Le Brun, AMC; Le Graet, J; Legrand, L; Lesgourgues, J; Liaudat, TI; Macias-Perez, J; Magliocchetti, M; Mannucci, F; Maoli, R; Martín-Fleitas, J; Martins, CJAP; Maurin, L; Metcalf, RB; Miluzio, M; Monaco, P; Montoro, A; Moretti, C; Morgante, G; Murray, C; Nadathur, S; Walton, NA; Patrizii, L; Popa, V; Potter, D; Reimberg, P; Risso, I; Rocci, P-F; Rollins, RP; Sahlén, M; Sarpa, E; Schneider, A; Sereno, M; Simon, P; Tanidis, K; Tao, C; Testera, G; Teyssier, R; Toft, S; Tosi, S; Troja, A; Tucci, M; Valieri, C; Valiviita, J; Vergani, D; Verza, G; Vielzeuf, P; Brown, ML; Sellentin, E
Source: Astronomy and Astrophysics , 694 , Article A141. (2025)
Publisher Information: Springer Verlag
Publication Year: 2025
Collection: University College London: UCL Discovery
Subject Terms: Methods: statistical; Surveys; Cosmology: observations; large-scale structure of Universe; Gravitational lensing: weak
Description: In this paper we present the framework for measuring angular power spectra in the Euclid mission. The observables in galaxy surveys, such as galaxy clustering and cosmic shear, are not continuous fields, but discrete sets of data, obtained only at the positions of galaxies. We show how to compute the angular power spectra of such discrete data sets, without treating observations as maps of an underlying continuous field that is overlaid with a noise component. This formalism allows us to compute the exact theoretical expectations for our measured spectra, under a number of assumptions that we track explicitly. In particular, we obtain exact expressions for the additive biases (‘shot noise’) in angular galaxy clustering and cosmic shear. For efficient practical computations, we introduce a spin-weighted spherical convolution with a well-defined convolution theorem, which allows us to apply exact theoretical predictions to finite-resolution maps, including HEALPix. When validating our methodology, we find that our measurements are biased by less than 1% of their statistical uncertainty in simulations of Euclid’s first data release.
Document Type: article in journal/newspaper
File Description: text
Language: English
Relation: https://discovery.ucl.ac.uk/id/eprint/10206498/1/Euclid%20preparation%20LIX%20%20Angular%20power%20spectra%20from%20discrete%20observations.pdf; https://discovery.ucl.ac.uk/id/eprint/10206498/
Availability: https://discovery.ucl.ac.uk/id/eprint/10206498/1/Euclid%20preparation%20LIX%20%20Angular%20power%20spectra%20from%20discrete%20observations.pdf; https://discovery.ucl.ac.uk/id/eprint/10206498/
Rights: open
Accession Number: edsbas.EE6ED2DB
Database: BASE