Accès ouvert déclaré
2023
article
Euclid preparation
K. Paterson, M. Schirmer, Y. Copin, Jean‐Charles Cuillandre, W. Gillard, L. A. Gutiérrez-Soto, L. Guzzo, Henk Hoekstra, T. Kitching, S. Paltani, Will J. Percival, M. Scodeggio, Letizia Stanghellini, P. N. Appleton, R. Laureijs, Y. Mellier, N. Aghanim, B. Altieri, A. Amara, N. Auricchio, Marco Baldi, R. Bender, C. Bodendorf, D. Bonino, E. Branchini, M. Brescia, J. Brinchmann, S. Camera, V. Capobianco, C. Carbone, J. Carretero, F. J. Castander, M. Castellano, S. Cavuoti, A. Cimatti, R. Clédassou, G. Congedo, Christopher J. Conselice, L. Conversi, L. Corcione, F. Courbin, A. Da Silva, H. Degaudenzi, J. Dinis, M. Douspis, F. Dubath, X. Dupac, S. Ferriol, M. Frailis, E. Franceschi, M. Fumana, S. Galeotta, B. Garilli, B. Gillis, C. Giocoli, A. Grazian, F. Grupp, S. V. H. Haugan, W. A. Holmes, A. Hornstrup, P. Hudelot, K. Jahnkę, M. Kümmel, A. Kiessling, M. Kilbinger, R. Kohley, B. Kubik, M. Kunz, H. Kurki‐Suonio, S. Ligori, P. B. Lilje, I. Lloro, E. Maiorano, O. Mansutti, O. Marggraf, K. Markovič, F. Marulli, R. Massey, E. Medinaceli, S. Mei, M. Meneghetti, G. Meylan, M. Moresco, L. Moscardini, R. Nakajima, S.-M Niemi, J.W Nightingale, T. Nutma, C. Padilla Aranda, F. Pasian, K. Pedersen, G. Polenta, M. Poncet, L.A Popa, F. Raison, A. Renzi, J. Rhodes, G. Riccio, Hans‐Walter Rix, E. Romelli, M. Roncarelli, E. Rossetti, R. P. Saglia, B. Sartoris, Peter Schneider, A. Secroun, G. Seidel, S. Serrano, C. Sirignano, G. Sirri, J. Skottfelt, L. Stančo, P. Tallada-Crespí, A.N Taylor, I. Tereno, R. Toledo-Moreo, F. Torradeflot, I. Tutusaus, L. Valenziano, T. Vassallo, Yun Wang, J. Weller, G. Zamorani, J. Zoubian, S. Andreon, S. Bardelli, E. Bozzo, C Colodro-Conde, D. Di Ferdinando, M. Farina, J Graciá-Carpio, E. Keihänen, V. Lindholm, D. Maino, N. Mauri, V Scottez, M. Tenti, E. Zucca, Y. Akrami, C. Baccigalupi, M. Ballardini, A. Biviano, Alejandro S. Borlaff, C. Burigana, R. Cabanac, A. Cappi, C.S Carvalho, Santiago Casas, G. Castignani, T. Castro, K. C. Chambers, Asantha Cooray, J. Coupon, H. M. Courtois, S. Davini, G. De Lucia, G. Desprez, J. A. Escartín, S. Escoffier, I. Ferrero, L. Gabarra, J. García-Bellido, Koshy George, F. Giacomini, G. Gozaliasl, H. Hildebrandt, I. Hook, J. J. E. Kajava, V. Kansal, C.C Kirkpatrick, L. Legrand, A. Loureiro, M. Magliocchetti, G Mainetti, S. Marcin, M. Martinelli, N. Martinet, C. J. A. P. Martins, S Matthew, L. Maurin, R. B. Metcalf, Pierluigi Monaco, G. Morgante, S. Nadathur, L. Patrizii, C. Porciani, D. Potter, M. Pöntinen, Ariel G. Sánchez, Z. Sakr, Aurel Schneider, E. Sefusatti, M. Sereno, A. Shulevski, Joachim Stadel, J Steinwagner, C Valieri, J. Väliviita, A. Veropalumbo, Matteo Viel, I.A Zinchenko
10Citations signalées, ce qui n’est pas une note de qualité
55Institutions déclarées
10Pays d’affiliation déclarés
Rattachement africain : us, ch, fr, it, pt, es, gb, no, dk, fi.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
The Euclid mission will conduct an extragalactic survey over 15 000 deg2 of the extragalactic sky. The spectroscopic channel of the Near-Infrared Spectrometer and Photometer (NISP) has a resolution of R ~ 450 for its blue and red grisms that collectively cover the 0.93–1.89 µm range. NISP will obtain spectroscopic redshifts for 3 × 107 galaxies for the experiments on galaxy clustering, baryonic acoustic oscillations, and redshift space distortion. The wavelength calibration must be accurate within 5 Å to avoid systematics in the redshifts and downstream cosmological parameters. The NISP pre-flight dispersion laws for the grisms were obtained on the ground using a Fabry-Perot etalon. Launch vibrations, zero gravity conditions, and thermal stabilisation may alter these dispersion laws, requiring an in-flight recalibration. To this end, we use the emission lines in the spectra of compact planetary nebulae (PNe), which were selected from a PN database. To ensure completeness of the PN sample, we developed a novel technique to identify compact and strong line emitters in Gaia spectroscopic data using the Gaia spectra shape coefficients. We obtained VLT/X-shooter spectra from 0.3 to 2.5 µm for 19 PNe in excellent seeing conditions and a wide slit, mimicking Euclid’s slitless spectroscopy mode but with a ten times higher spectral resolution. Additional observations of one northern PN were obtained in the 0.80–1.90 µm range with the GMOS and GNIRS instruments at the Gemini North Observatory. The collected spectra were combined into an atlas of heliocentric vacuum wavelengths with a joint statistical and systematic accuracy of 0.1 Å in the optical and 0.3 Å in the near-infrared. The wavelength atlas and the related 1D and 2D spectra are made publicly available.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- <i>Euclid</i> preparation
- Date Crossref
- 01/06/2023
- Éditeur
- EDP Sciences
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Astronomy and Astrophysical ResearchRadioactive Decay and Measurement Techniques