Zobrazeno 1 - 10
of 861
pro vyhledávání: '"F. Sureau"'
Autor:
Peter L. Taylor, T. Kitching, V. F. Cardone, A. Ferté, E. M. Huff, F. Bernardeau, J. Rhodes, A. C. Deshpande, I. Tutusaus, A. Pourtsidou, S. Camera, C. Carbone, S. Casas, M. Martinelli, V. Pettorino, Z. Sakr, D. Sapone, V. Yankelevich, N. Auricchio, A. Balestra, C. Bodendorf, D. Bonino, A. Boucaud, E. Branchini, M. Brescia, V. Capobianco, J. Carretero, M. Castellano, S. Cavuoti, A. Cimatti, R. Cledassou, G. Congedo, L. Conversi, L. Corcione, M. Cropper, E. Franceschi, B. Garilli, B. Gillis, C. Giocoli, L. Guzzo, S. V. H. Haugan, W. Holmes, F. Hormuth, K. Jahnke, S. Kermiche, M. Kilbinger, M. Kunz, H. Kurki-Suonio, S. Ligori, P. B. Lilje, I. Lloro, O. Marggraf, K. Markovic, R. Massey, E. Medinaceli, S. Mei, M. Meneghetti, G. Meylan, M. Moresco, B. Morin, L. Moscardini, S. Niemi, C. Padilla, F. Pasian, S. Paltani, K. Pedersen, W. J. Percival, S. Pires, G. Polenta, M. Poncet, L. Popa, F. Raison, M. Roncarelli, E. Rossetti, R. Saglia, P. Schneider, A. Secroun, G. Seidel, S. Serrano, C. Sirignano, G. Sirri, F. Sureau, P. Tallada Crespí, D. Tavagnacco, A. N. Taylor, H. I. Teplitz, I. Tereno, R. Toledo-Moreo, E. A. Valentijn, L. Valenziano, T. Vassallo, Y. Wang, J. Weller, A. Zacchei, J. Zoubian
Publikováno v:
The Open Journal of Astrophysics, Vol 4 (2021)
Modelling uncertainties at small scales, i.e. high $k$ in the power spectrum $P(k)$, due to baryonic feedback, nonlinear structure growth and the fact that galaxies are biased tracers poses a significant obstacle to fully leverage the constraining po
Externí odkaz:
https://doaj.org/article/b112f818a2b94598a56eed205420dad5
Autor:
F. Sureau
Publikováno v:
Bulletin de l'Académie Nationale de Médecine. 206:370-373
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
K zobrazení výsledku je třeba se přihlásit.
K zobrazení výsledku je třeba se přihlásit.
Publikováno v:
Astronomy and Astrophysics-A&A
Astronomy and Astrophysics-A&A, 2022, 663, pp.A69. ⟨10.1051/0004-6361/202142626⟩
Astronomy and Astrophysics-A&A, 2022, 663, pp.A69. ⟨10.1051/0004-6361/202142626⟩
Deep Learning (DL) has shown remarkable results in solving inverse problems in various domains. In particular, the Tikhonet approach is very powerful to deconvolve optical astronomical images (Sureau et al. 2020). Yet, this approach only uses the $\e
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a91b86fd6c7842025b3762ed244a8342
http://arxiv.org/abs/2203.07412
http://arxiv.org/abs/2203.07412
Autor:
F. J. Castander, Rafael Toledo-Moreo, L. Bisigello, Marc Sauvage, M. Poncet, Ulrike Kuchner, H. Israel, R. Cledassou, S. Kermiche, Crescenzo Tortora, F. Sureau, Sebastiano Ligori, R. Kohley, Sandrine Pires, Jarle Brinchmann, Mauro Roncarelli, Michele Moresco, G. Zamorani, Andy Taylor, G. Meylan, Andrea Cimatti, Natalia Auricchio, J. Carretero, B. Kubik, M. Wetzstein, Lucia Pozzetti, Thomas D. Kitching, Felix Hormuth, Stefano Andreon, E. Franceschi, Claudia Maraston, M. Bolzonella, Roberto P. Saglia, Martin Kunz, Simona Mei, D. Masters, M. Frailis, Andrew Humphrey, Leonardo Corcione, A. Secroun, Mark Cropper, Ismael Tereno, G. Polenta, V. Capobianco, Jason Rhodes, L. Valenziano, Ivan Lloro, S. Serrano, Peter Schneider, Elisabetta Maiorano, L. Conversi, Fabio Pasian, Ole Marggraf, G. Congedo, P. B. Lilje, S. Dusini, S. Paltani, Y. Mellier, Valeria Pettorino, P. Franzetti, C. J. Conselice, F. Raison, B. Garilli, Yu Wang, Marco Castellano, M. Fumana, O. Le Fevre, Richard Massey, Knud Jahnke, Pierre-Alain Duc, Stefano Cavuoti, Emanuel Rossetti, C. Padilla, Julien Zoubian
Publikováno v:
Monthly Notices of the Royal Astronomical Society
Monthly Notices of the Royal Astronomical Society, Oxford University Press (OUP): Policy P-Oxford Open Option A, 2020, 494 (2), pp.2337-2354. ⟨10.1093/mnras/staa885⟩
Congedo, G & Taylor, A N 2020, ' Euclid: The selection of quiescent and star-forming galaxies using observed colours? ', Monthly Notices of the Royal Astronomical Society, vol. 494, no. 2, pp. 2337-2354 . https://doi.org/10.1093/mnras/staa885
Monthly Notices of the Royal Astronomical Society, 2020, 494 (2), pp.2337-2354. ⟨10.1093/mnras/staa885⟩
Monthly Notices of the Royal Astronomical Society, Oxford University Press (OUP): Policy P-Oxford Open Option A, 2020, 494 (2), pp.2337-2354. ⟨10.1093/mnras/staa885⟩
Congedo, G & Taylor, A N 2020, ' Euclid: The selection of quiescent and star-forming galaxies using observed colours? ', Monthly Notices of the Royal Astronomical Society, vol. 494, no. 2, pp. 2337-2354 . https://doi.org/10.1093/mnras/staa885
Monthly Notices of the Royal Astronomical Society, 2020, 494 (2), pp.2337-2354. ⟨10.1093/mnras/staa885⟩
The Euclid mission will observe well over a billion galaxies out to $z\sim6$ and beyond. This will offer an unrivalled opportunity to investigate several key questions for understanding galaxy formation and evolution. The first step for many of these
Autor:
Martin Crocce, Chiara Sirignano, O. Mansutti, L. Whittaker, Massimo Meneghetti, I. Ferrero, Alina Kiessling, Edwin A. Valentijn, Gianluca Castignani, S. Maurogordato, Giuseppe Riccio, P. B. Lilje, Carlo Burigana, Rafael Toledo-Moreo, B. Gillis, Davide Maino, Felix Hormuth, G. Sirri, F. Sureau, W. A. Holmes, Marco Baldi, Richard Massey, Knud Jahnke, K. Pedersen, A. Da Silva, Enrico Bozzo, E. Romelli, Simona Mei, C. Bodendorf, Jussi Valiviita, L. Popa, R. Cledassou, Luigi Guzzo, Andrea Cimatti, A. Pocino, F. Raison, Hélène M. Courtois, M. Tenti, Jarle Brinchmann, Robert C. Nichol, M. Poncet, Massimo Brescia, D. Di Ferdinando, Ghassem Gozaliasl, G. Meylan, D. Bonino, C. Neissner, C. S. Carvalho, Anne Costille, C. A. J. Duncan, M. Viel, A. Balaguera-Antolínez, Valeria Pettorino, Leonardo Corcione, S. Serrano, X. Dupac, Jean Coupon, C. Baccigalupi, R. Benton Metcalf, S. Farrens, Lauro Moscardini, V. Scottez, Yu Wang, Marco Castellano, G. Zamorani, Roberto P. Saglia, Andrea Biviano, Martin Kunz, F. Grupp, S. Casas, S. M. Niemi, J. Nightingale, Enzo Branchini, A. Secroun, N. Martinet, Mark Cropper, G. Seidel, Ismael Tereno, L. Stanco, L. Conversi, E. Medinaceli, Doug Potter, Stefano Cavuoti, Lucia Pozzetti, A. Cappi, F. J. Castander, C. C. Kirkpatrick, G. Congedo, R. Nakajima, Emanuel Rossetti, B. Morin, Fabio Finelli, F. Lacasa, Y. Copin, C. Padilla, Andrea Tramacere, W. Gillard, M. Martinelli, E. Keihänen, S. Kermiche, Mauro Roncarelli, Domenico Sapone, B. Garilli, I. Lloro, E. Munari, Sotiria Fotopoulou, Ariel G. Sánchez, Julien Zoubian, T. Vassallo, Romain Teyssier, Stefano Camera, Ole Marggraf, S. de la Torre, Z. Sakr, V. Capobianco, L. Patrizii, Carlo Giocoli, Stefano Andreon, S. Dusini, M. Frailis, A. Balestra, Ralf Bender, Pedro G. Ferreira, A. Boucaud, Jason Rhodes, Luca Valenziano, E. Zucca, F. Dubath, S. Bardelli, G. Polenta, Pablo Fosalba, Peter Schneider, Elisabetta Maiorano, Fabio Pasian, Hannu Kurki-Suonio, Jean-Gabriel Cuby, N. Welikala, Natalia Auricchio, Thomas D. Kitching, A. Porredon, V. F. Cardone, C. Colodro-Conde, Michele Moresco, Andy Taylor, Will J. Percival, Alkistis Pourtsidou, Christopher J. Conselice, S. Paltani, E. Franceschi, Sebastiano Ligori, Roberto Scaramella, Javier Graciá-Carpio, A. Renzi, Remi A. Cabanac, S. Galeotta, S. Pires, Federico Marulli, Andrea Zacchei, I. Tutusaus
Publikováno v:
Astronomy & astrophysics, 655:A44. EDP Sciences
Astronomy and astrophysics, 655:A44. EDP Sciences
Astronomy & Astrophysics, 2021, Vol.655, pp.A44 [Peer Reviewed Journal]
Astron.Astrophys.
Astron.Astrophys., 2021, 655, pp.A44. ⟨10.1051/0004-6361/202141061⟩
Astronomy and Astrophysics-A&A
Astronomy and Astrophysics-A&A, 2021, 655, pp.A44. ⟨10.1051/0004-6361/202141061⟩
Digital.CSIC. Repositorio Institucional del CSIC
instname
2021, ' Euclid preparation: XII. Optimizing the photometric sample of the Euclid survey for galaxy clustering and galaxy-galaxy lensing analyses ', Astronomy and Astrophysics, vol. 655, A44, pp. 1-21 . https://doi.org/10.1051/0004-6361/202141061
Astronomy and astrophysics, 655:A44. EDP Sciences
Astronomy & Astrophysics, 2021, Vol.655, pp.A44 [Peer Reviewed Journal]
Astron.Astrophys.
Astron.Astrophys., 2021, 655, pp.A44. ⟨10.1051/0004-6361/202141061⟩
Astronomy and Astrophysics-A&A
Astronomy and Astrophysics-A&A, 2021, 655, pp.A44. ⟨10.1051/0004-6361/202141061⟩
Digital.CSIC. Repositorio Institucional del CSIC
instname
2021, ' Euclid preparation: XII. Optimizing the photometric sample of the Euclid survey for galaxy clustering and galaxy-galaxy lensing analyses ', Astronomy and Astrophysics, vol. 655, A44, pp. 1-21 . https://doi.org/10.1051/0004-6361/202141061
Pocino, A., et al. (Euclid Collaboration)
Photometric redshifts (photo-zs) are one of the main ingredients in the analysis of cosmological probes. Their accuracy particularly affects the results of the analyses of galaxy clustering with photomet
Photometric redshifts (photo-zs) are one of the main ingredients in the analysis of cosmological probes. Their accuracy particularly affects the results of the analyses of galaxy clustering with photomet
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f39e25bbce37e3d11c3d7142d5b6e9c0
https://research.rug.nl/en/publications/993b391e-e42b-4acb-b35e-a813861c2485
https://research.rug.nl/en/publications/993b391e-e42b-4acb-b35e-a813861c2485
Autor:
Yu Wang, Marco Castellano, J. Dakin, Natalia Auricchio, Enrico Bozzo, R. Cledassou, Mischa Knabenhans, Stefano Cavuoti, A. Da Silva, E. Medinaceli, C. Padilla, Benjamin J. Metcalf, Andrea Zacchei, T. Vassallo, Rafael Toledo-Moreo, C. Neissner, Giulio Fabbian, Chiara Sirignano, L. Stanco, E. Keihänen, Enzo Branchini, A. Secroun, N. Martinet, L. Whittaker, S. Serrano, M. Frailis, Carlo Baccigalupi, Ismael Tereno, Michele Moresco, Ralf Bender, Pedro G. Ferreira, S. de la Torre, M. Tenti, A. Cappi, W. A. Holmes, Jason Rhodes, J. Carretero, Luca Valenziano, S. Niemi, E. Romelli, Carlo Burigana, Gianluca Castignani, Joachim Stadel, Federico Marulli, Jussi Valiviita, Luigi Guzzo, F. Raison, Hélène M. Courtois, K. Markovic, C. Colodro-Conde, Carlo Giocoli, Leonardo Corcione, Ricard Casas, E. Franceschi, Stefano Andreon, Javier Graciá-Carpio, F. Sureau, Sebastiano Ligori, A. Renzi, C. A. J. Duncan, Hannu Kurki-Suonio, Remi A. Cabanac, Y. Copin, S. Paltani, S. Casas, N. Welikala, E. Munari, G. Sirri, Stefano Camera, Matteo Viel, S. Galeotta, C. J. Conselice, B. Garilli, Peter W. Battaglia, Doug Potter, B. Morin, Ole Marggraf, C. S. Carvalho, Domenico Sapone, I. Lloro, Jean Coupon, Andy Taylor, Ariel G. Sánchez, E. Zucca, Sandrine Pires, Ghassem Gozaliasl, X. Dupac, Lauro Moscardini, Aurel Schneider, Mauro Roncarelli, S. Farrens, Roberto P. Saglia, F. Grupp, Stefano Marelli, Pablo Fosalba, L. Conversi, V. Capobianco, Davide Maino, Felix Hormuth, S. Maurogordato, L. Patrizii, Richard Massey, Knud Jahnke, M. Poncet, H. Israel, P. Tallada Crespí, Giuseppe Riccio, Massimo Brescia, D. Di Ferdinando, S. Bardelli, G. Polenta, B. Kubik, Romain Teyssier, Marco Baldi, F. Torradeflot, Peter Schneider, Fabio Pasian, Steen Hannestad, G. Meylan, V. Scottez, Martin Kunz, A. Balaguera-Antolínez, Valeria Pettorino, Carmelita Carbone, Fabio Finelli, C. Bodendorf, N. Mauri, Massimo Meneghetti, Thomas Tram, P. B. Lilje, Andrea Biviano, G. Congedo, S. Kermiche, C. C. Kirkpatrick
Publikováno v:
Monthly Notices of the Royal Astronomical Society
Monthly Notices of the Royal Astronomical Society, 2021, 505 (2), pp.2840-2869. ⟨10.1093/mnras/stab1366⟩
Euclid Collaboration, Knabenhans, M, Stadel, J, Potter, D, Dakin, J, Hannestad, S, Tram, T, Marelli, S, Schneider, A, Teyssier, R, Fosalba, P, Andreon, S, Auricchio, N, Baccigalupi, C, Balaguera-Antolínez, A, Baldi, M, Bardelli, S, Battaglia, P, Bender, R, Biviano, A, Bodendorf, C, Bozzo, E, Branchini, E, Brescia, M, Burigana, C, Cabanac, R, Camera, S, Capobianco, V, Cappi, A, Carbone, C, Carretero, J, Carvalho, C S, Casas, R, Casas, S, Castellano, M, Castignani, G, Cavuoti, S, Cledassou, R, Colodro-Conde, C, Congedo, G, Conselice, C J, Conversi, L, Copin, Y, Corcione, L, Coupon, J, Courtois, H M, Da Silva, A, Sánchez, A G, Schneider, P & Wang, Y 2021, ' Euclid preparation : IX. EuclidEmulator2 – power spectrum emulation with massive neutrinos and self-consistent dark energy perturbations ', Monthly Notices of the Royal Astronomical Society, bind 505, nr. 2, s. 2840-2869 . https://doi.org/10.1093/mnras/stab1366
Monthly Notices of the Royal Astronomical Society, Oxford University Press (OUP): Policy P-Oxford Open Option A, 2021, 505 (2), pp.2840-2869. ⟨10.1093/mnras/stab1366⟩
Monthly Notices of the Royal Astronomical Society, 2021, Vol.505(2), pp.2840-2869 [Peer Reviewed Journal]
Monthly Notices of the Royal Astronomical Society, 2021, 505 (2), pp.2840-2869. ⟨10.1093/mnras/stab1366⟩
Euclid Collaboration, Knabenhans, M, Stadel, J, Potter, D, Dakin, J, Hannestad, S, Tram, T, Marelli, S, Schneider, A, Teyssier, R, Fosalba, P, Andreon, S, Auricchio, N, Baccigalupi, C, Balaguera-Antolínez, A, Baldi, M, Bardelli, S, Battaglia, P, Bender, R, Biviano, A, Bodendorf, C, Bozzo, E, Branchini, E, Brescia, M, Burigana, C, Cabanac, R, Camera, S, Capobianco, V, Cappi, A, Carbone, C, Carretero, J, Carvalho, C S, Casas, R, Casas, S, Castellano, M, Castignani, G, Cavuoti, S, Cledassou, R, Colodro-Conde, C, Congedo, G, Conselice, C J, Conversi, L, Copin, Y, Corcione, L, Coupon, J, Courtois, H M, Da Silva, A, Sánchez, A G, Schneider, P & Wang, Y 2021, ' Euclid preparation : IX. EuclidEmulator2 – power spectrum emulation with massive neutrinos and self-consistent dark energy perturbations ', Monthly Notices of the Royal Astronomical Society, bind 505, nr. 2, s. 2840-2869 . https://doi.org/10.1093/mnras/stab1366
Monthly Notices of the Royal Astronomical Society, Oxford University Press (OUP): Policy P-Oxford Open Option A, 2021, 505 (2), pp.2840-2869. ⟨10.1093/mnras/stab1366⟩
Monthly Notices of the Royal Astronomical Society, 2021, Vol.505(2), pp.2840-2869 [Peer Reviewed Journal]
We present a new, updated version of the EuclidEmulator (called EuclidEmulator2), a fast and accurate predictor for the nonlinear correction of the matter power spectrum. Percent-level accurate emulation is now supported in the eight-dimensional para
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::46ed2479a3793d5f12bd46a6259112c1
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
K zobrazení výsledku je třeba se přihlásit.
K zobrazení výsledku je třeba se přihlásit.
Autor:
C. Colodro-Conde, Marco Baldi, K. Pedersen, F. Sureau, Sebastiano Ligori, M. Fabricius, F. Torradeflot, Chiara Sirignano, L. Whittaker, Michele Moresco, J. Valiviita, Sandrine Pires, Christopher J. Conselice, Andrea Zacchei, Natalia Auricchio, A. Renzi, Peter Schneider, M. Tenti, E. Romelli, Elisabetta Maiorano, P. Tallada Crespa, A. Ealet, Eric Jullo, Yu Wang, Marco Castellano, Hendrik Hildebrandt, S. Paltani, K. Markovic, Fabio Pasian, Hélène M. Courtois, E. Franceschi, Enzo Branchini, A. Secroun, N. Martinet, Mark Cropper, Stein Vidar Hagfors Haugan, Adam Amara, Ghassem Gozaliasl, D. Masters, Martin Kunz, G. Seidel, Ismael Tereno, A. Cappi, Leonardo Corcione, Emanuel Rossetti, Ralf Bender, Pedro G. Ferreira, Giuseppe Riccio, Massimo Brescia, D. Di Ferdinando, G. Zamorani, Stefano Borgani, D. Bonino, X. Dupac, Lauro Moscardini, C. Baccigalupi, B. Morin, Rafael Toledo-Moreo, Federico Marulli, C. Padilla, A. Boucaud, Jason Rhodes, F. Dubath, Javier Graciá-Carpio, Remi A. Cabanac, S. Casas, Roberto P. Saglia, F. Grupp, S. Galeotta, Enrico Bozzo, V. Scottez, Luca Valenziano, B. Gillis, Alina Kiessling, L. Popa, R. Cledassou, V. Capobianco, L. Patrizii, Julien Zoubian, Iary Davidzon, Carlo Burigana, Hannu Kurki-Suonio, Jean Coupon, L. Conversi, H. J. McCracken, Lucia Pozzetti, T. Vassallo, Edwin A. Valentijn, G. Sirri, Jean-Gabriel Cuby, N. Welikala, S. Dusini, R. Nakajima, Matteo Maturi, H. Degaudenzi, P. Franzetti, A. Balestra, Stefano Cavuoti, Ole Marggraf, C. S. Carvalho, S. Bardelli, Ruyman Azzollini, W. Gillard, E. Keihänen, A. Da Silva, R. Benton Metcalf, G. Polenta, Gianluca Castignani, S. Maurogordato, M. Poncet, O. Ilbert, Stefano Andreon, Richard Massey, Knud Jahnke, E. Zucca, E. Medinaceli, Mauro Roncarelli, S. Farrens, C. A. J. Duncan, C. Neissner, Doug Potter, Andrea Tramacere, Jochen Weller, Sotiria Fotopoulou, F. J. Castander, J. Carretero, S. Serrano, Pablo Fosalba, Andrea Cimatti, E. Munari, R. Pello, Anne Costille, Tim Schrabback, Stefano Camera, Y. Copin, L. Stanco, W. A. Holmes, Domenico Sapone, I. Lloro, Harry I. Teplitz, B. Garilli, Clotilde Laigle, Ariel G. Sánchez, Luigi Guzzo, F. Raison, N. Mauri, P. B. Lilje, C. Bodendorf, A. Balaguera-Antolínez, Valeria Pettorino, Carmelita Carbone, Fabio Finelli, Andrea Biviano, Angus H. Wright, J. Nightingale, S. de la Torre, S. Niemi, Carlo Giocoli, G. Congedo, S. Kermiche, C. C. Kirkpatrick, Davide Maino, Felix Hormuth, Simona Mei
Publikováno v:
Astronomy and astrophysics, 647:A117. EDP Sciences
Ilbert, O, de la Torre, S, Martinet, N, Wright, A H, Paltani, S, Davidzon, I & Euclid Collaboration 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy & Astrophysics, vol. 647, A117 . https://doi.org/10.1051/0004-6361/202040237
Astronomy and Astrophysics-A&A
Astronomy and Astrophysics-A&A, EDP Sciences, 2021, 647, pp.A117. ⟨10.1051/0004-6361/202040237⟩
Ilbert, O, De La Torre, S, Martinet, N, Wright, A H, Paltani, S, Laigle, C, Davidzon, I, Jullo, E, Hildebrandt, H, Masters, D C, Amara, A, Conselice, C J, Andreon, S, Auricchio, N, Azzollini, R, Baccigalupi, C, Balaguera-Antolinez, A, Baldi, M, Balestra, A, Bardelli, S, Bender, R, Biviano, A, Bodendorf, C, Bonino, D, Borgani, S, Boucaud, A, Bozzo, E, Branchini, E, Brescia, M, Burigana, C, Cabanac, R, Camera, S, Capobianco, V, Cappi, A, Carbone, C, Carretero, J, Carvalho, C S, Casas, S, Castander, F J, Castellano, M, Castignani, G, Cavuoti, S, Cimatti, A, Cledassou, R, Colodro-Conde, C, Congedo, G, Conversi, L, Copin, Y, Corcione, L, Costille, A, Coupon, J, Courtois, H M, Cropper, M, Cuby, J, Da Silva, A, Degaudenzi, H, Di Ferdinando, D, Dubath, F, Duncan, C, Dupac, X, Dusini, S, Ealet, A, Fabricius, M, Farrens, S, Ferreira, P G, Finelli, F, Fosalba, P, Fotopoulou, S, Franceschi, E, Franzetti, P, Galeotta, S, Garilli, B, Gillard, W, Gillis, B, Giocoli, C, Gozaliasl, G, Gracia-Carpio, J, Grupp, F, Guzzo, L, Haugan, S V H, Holmes, W, Hormuth, F, Jahnke, K, Keihanen, E, Kermiche, S, Kiessling, A, Kirkpatrick, C C, Kunz, M, Kurki-Suonio, H, Ligori, S, Lilje, P B, Lloro, I, Maino, D, Maiorano, E, Marggraf, O, Markovic, K, Marulli, F, Massey, R, Maturi, M, Mauri, N, Maurogordato, S, McCracken, H J, Medinaceli, E, Mei, S, Benton Metcalf, R, Moresco, M, Morin, B, Moscardini, L, Munari, E, Nakajima, R, Neissner, C, Niemi, S, Nightingale, J, Padilla, C, Pasian, F, Patrizii, L, Pedersen, K, Pello, R, Pettorino, V, Pires, S, Polenta, G, Poncet, M, Popa, L, Potter, D, Pozzetti, L, Raison, F, Renzi, A, Rhodes, J, Riccio, G, Romelli, E, Roncarelli, M, Rossetti, E, Saglia, R, Sanchez, A G, Sapone, D, Schneider, P, Schrabback, T, Scottez, V, Secroun, A, Seidel, G, Serrano, S, Sirignano, C, Sirri, G, Stanco, L, Sureau, F, Tallada Crespa, P, Tenti, M, Teplitz, H I, Tereno, I, Toledo-Moreo, R, Torradeflot, F, Tramacere, A, Valentijn, E A, Valenziano, L, Valiviita, J, Vassallo, T, Wang, Y, Welikala, N, Weller, J, Whittaker, L, Zacchei, A, Zamorani, G, Zoubian, J & Zucca, E 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117 . https://doi.org/10.1051/0004-6361/202040237
2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117, pp. 1-21 . https://doi.org/10.1051/0004-6361/202040237
Euclid Collaboration, Ilbert, O, Amara, A & Markovic, K 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117, pp. 1-21 . https://doi.org/10.1051/0004-6361/202040237
Digital.CSIC. Repositorio Institucional del CSIC
instname
Ilbert, O, de la Torre, S, Martinet, N, Wright, A H, Paltani, S, Davidzon, I & Euclid Collaboration 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy & Astrophysics, vol. 647, A117 . https://doi.org/10.1051/0004-6361/202040237
Astronomy and Astrophysics-A&A
Astronomy and Astrophysics-A&A, EDP Sciences, 2021, 647, pp.A117. ⟨10.1051/0004-6361/202040237⟩
Ilbert, O, De La Torre, S, Martinet, N, Wright, A H, Paltani, S, Laigle, C, Davidzon, I, Jullo, E, Hildebrandt, H, Masters, D C, Amara, A, Conselice, C J, Andreon, S, Auricchio, N, Azzollini, R, Baccigalupi, C, Balaguera-Antolinez, A, Baldi, M, Balestra, A, Bardelli, S, Bender, R, Biviano, A, Bodendorf, C, Bonino, D, Borgani, S, Boucaud, A, Bozzo, E, Branchini, E, Brescia, M, Burigana, C, Cabanac, R, Camera, S, Capobianco, V, Cappi, A, Carbone, C, Carretero, J, Carvalho, C S, Casas, S, Castander, F J, Castellano, M, Castignani, G, Cavuoti, S, Cimatti, A, Cledassou, R, Colodro-Conde, C, Congedo, G, Conversi, L, Copin, Y, Corcione, L, Costille, A, Coupon, J, Courtois, H M, Cropper, M, Cuby, J, Da Silva, A, Degaudenzi, H, Di Ferdinando, D, Dubath, F, Duncan, C, Dupac, X, Dusini, S, Ealet, A, Fabricius, M, Farrens, S, Ferreira, P G, Finelli, F, Fosalba, P, Fotopoulou, S, Franceschi, E, Franzetti, P, Galeotta, S, Garilli, B, Gillard, W, Gillis, B, Giocoli, C, Gozaliasl, G, Gracia-Carpio, J, Grupp, F, Guzzo, L, Haugan, S V H, Holmes, W, Hormuth, F, Jahnke, K, Keihanen, E, Kermiche, S, Kiessling, A, Kirkpatrick, C C, Kunz, M, Kurki-Suonio, H, Ligori, S, Lilje, P B, Lloro, I, Maino, D, Maiorano, E, Marggraf, O, Markovic, K, Marulli, F, Massey, R, Maturi, M, Mauri, N, Maurogordato, S, McCracken, H J, Medinaceli, E, Mei, S, Benton Metcalf, R, Moresco, M, Morin, B, Moscardini, L, Munari, E, Nakajima, R, Neissner, C, Niemi, S, Nightingale, J, Padilla, C, Pasian, F, Patrizii, L, Pedersen, K, Pello, R, Pettorino, V, Pires, S, Polenta, G, Poncet, M, Popa, L, Potter, D, Pozzetti, L, Raison, F, Renzi, A, Rhodes, J, Riccio, G, Romelli, E, Roncarelli, M, Rossetti, E, Saglia, R, Sanchez, A G, Sapone, D, Schneider, P, Schrabback, T, Scottez, V, Secroun, A, Seidel, G, Serrano, S, Sirignano, C, Sirri, G, Stanco, L, Sureau, F, Tallada Crespa, P, Tenti, M, Teplitz, H I, Tereno, I, Toledo-Moreo, R, Torradeflot, F, Tramacere, A, Valentijn, E A, Valenziano, L, Valiviita, J, Vassallo, T, Wang, Y, Welikala, N, Weller, J, Whittaker, L, Zacchei, A, Zamorani, G, Zoubian, J & Zucca, E 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117 . https://doi.org/10.1051/0004-6361/202040237
2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117, pp. 1-21 . https://doi.org/10.1051/0004-6361/202040237
Euclid Collaboration, Ilbert, O, Amara, A & Markovic, K 2021, ' Euclid preparation : XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography ', Astronomy and Astrophysics, vol. 647, A117, pp. 1-21 . https://doi.org/10.1051/0004-6361/202040237
Digital.CSIC. Repositorio Institucional del CSIC
instname
Ilbert, O., et al. (Euclid Collaboration)
The analysis of weak gravitational lensing in wide-field imaging surveys is considered to be a major cosmological probe of dark energy. Our capacity to constrain the dark energy equation of state relies
The analysis of weak gravitational lensing in wide-field imaging surveys is considered to be a major cosmological probe of dark energy. Our capacity to constrain the dark energy equation of state relies
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a625801080022d390618ad3576d88bc9
https://research.rug.nl/en/publications/bf81126d-02c0-4626-a592-519202f0a5d1
https://research.rug.nl/en/publications/bf81126d-02c0-4626-a592-519202f0a5d1
Autor:
Richard Massey, Knud Jahnke, Harry Teplitz, J. Carretero, R. P. Saglia, Domenico Sapone, I. Lloro, Natalia Auricchio, M. Martinelli, Massimo Brescia, B. Garilli, F. Raison, Carmelita Carbone, Yu Wang, P. Tallada Crespí, Jochen Weller, Stefano Camera, L. Moscardini, S. Kermiche, Leonardo Corcione, Daniele Tavagnacco, B. Gillis, Stein Vidar Hagfors Haugan, B. Morin, Ole Marggraf, C. Giocoli, Edwin A. Valentijn, G. Sirri, I. Tutusaus, Stefano Cavuoti, S. Casas, K. Pedersen, S. Pires, W. A. Holmes, V. Yankelevich, A. Boucaud, V. Capobianco, S. Paltani, L. Conversi, C. Bodendorf, T. Kitching, G. Polenta, L. Popa, R. Cledassou, M. Poncet, T. Vassallo, A. Zacchei, M. Kilbinger, A. Balestra, Andy Taylor, Will J. Percival, E. Branchini, M. Castellano, V. Pettorino, Mauro Roncarelli, Luigi Guzzo, Massimo Meneghetti, Agnès Ferté, F. Bernardeau, E. M. Huff, G. Congedo, A. Secroun, Mark Cropper, K. Markovic, G. Seidel, Ismael Tereno, A. Cimatti, G. Meylan, S. Niemi, Felix Hormuth, F. Sureau, Sebastiano Ligori, Michele Moresco, P. B. Lilje, Simona Mei, Hannu Kurki-Suonio, S. Serrano, V. F. Cardone, Emanuel Rossetti, C. Padilla, A. C. Deshpande, Julien Zoubian, E. Franceschi, Alkistis Pourtsidou, Jason Rhodes, E. Medinaceli, Rafael Toledo-Moreo, Luca Valenziano, Peter Taylor, D. Bonino, Chiara Sirignano, M. Kunz, Z. Sakr, Peter Schneider, Fabio Pasian
Publikováno v:
The Open Journal of Astrophysics
2021, ' Euclid: Forecasts for k-cut 3×2 Point Statistics ', The Open Journal of Astrophysics, vol. 4, no. 2021, pp. 1-10 . https://doi.org/10.21105/astro.2012.04672
2021, ' Euclid: Forecasts for k-cut 3×2 Point Statistics ', The Open Journal of Astrophysics, vol. 4, no. 2021, pp. 1-10 . https://doi.org/10.21105/astro.2012.04672
Modelling uncertainties at small scales, i.e. high $k$ in the power spectrum $P(k)$, due to baryonic feedback, nonlinear structure growth and the fact that galaxies are biased tracers poses a significant obstacle to fully leverage the constraining po