Euclid preparation: I. The Euclid Wide Survey
Abstract
Euclid is an ESA mission designed to constrain the properties of dark energy and gravity via weak gravitational lensing and galaxy clustering. It will carry out a wide area imaging and spectroscopy survey (EWS) in visible and near-infrared, covering roughly 15,000 square degrees of extragalactic sky on six years. The wide-field telescope and instruments are optimized for pristine PSF and reduced straylight, producing very crisp images. This paper presents the building of the Euclid reference survey: the sequence of pointings of EWS, Deep fields, Auxiliary fields for calibrations, and spacecraft movements followed by Euclid as it operates in a step-and-stare mode from its orbit around the Lagrange point L2. Each EWS pointing has four dithered frames; we simulate the dither pattern at pixel level to analyse the effective coverage. We use up-to-date models for the sky background to define the Euclid region-of-interest (RoI). The building of the reference survey is highly constrained from calibration cadences, spacecraft constraints and background levels; synergies with ground-based coverage are also considered. Via purposely-built software optimized to prioritize best sky areas, produce a compact coverage, and ensure thermal stability, we generate a schedule for the Auxiliary and Deep fields observations and schedule the RoI with EWS transit observations. The resulting reference survey RSD_2021A fulfills all constraints and is a good proxy for the final solution. Its wide survey covers 14,500 square degrees. The limiting AB magnitudes ( point-like source) achieved in its footprint are estimated to be 26.2 (visible) and 24.5 (near-infrared); for spectroscopy, the H line flux limit is erg cm s at 1600 nm; and for diffuse emission the surface brightness limits are 29.8 (visible) and 28.4 (near-infrared) mag arcsec.
Keywords
Cite
@article{arxiv.2108.01201,
title = {Euclid preparation: I. The Euclid Wide Survey},
author = {R. Scaramella and J. Amiaux and Y. Mellier and C. Burigana and C. S. Carvalho and J. -C. Cuillandre and A. Da Silva and A. Derosa and J. Dinis and E. Maiorano and M. Maris and I. Tereno and R. Laureijs and T. Boenke and G. Buenadicha and X. Dupac and L. M. Gaspar Venancio and P. Gómez-Álvarez and J. Hoar and J. Lorenzo Alvarez and G. D. Racca and G. Saavedra-Criado and J. Schwartz and R. Vavrek and M. Schirmer and H. Aussel and R. Azzollini and V. F. Cardone and M. Cropper and A. Ealet and B. Garilli and W. Gillard and B. R. Granett and L. Guzzo and H. Hoekstra and K. Jahnke and T. Kitching and M. Meneghetti and L. Miller and R. Nakajima and S. M. Niemi and F. Pasian and W. J. Percival and M. Sauvage and M. Scodeggio and S. Wachter and A. Zacchei and N. Aghanim and A. Amara and T. Auphan and N. Auricchio and S. Awan and A. Balestra and R. Bender and C. Bodendorf and D. Bonino and E. Branchini and S. Brau-Nogue and M. Brescia and G. P. Candini and V. Capobianco and C. Carbone and R. G. Carlberg and J. Carretero and R. Casas and F. J. Castander and M. Castellano and S. Cavuoti and A. Cimatti and R. Cledassou and G. Congedo and C. J. Conselice and L. Conversi and Y. Copin and L. Corcione and A. Costille and F. Courbin and H. Degaudenzi and M. Douspis and F. Dubath and C. A. J. Duncan and S. Dusini and S. Farrens and S. Ferriol and P. Fosalba and N. Fourmanoit and M. Frailis and E. Franceschi and P. Franzetti and M. Fumana and B. Gillis and C. Giocoli and A. Grazian and F. Grupp and S. V. H. Haugan and W. Holmes and F. Hormuth and P. Hudelot and S. Kermiche and A. Kiessling and M. Kilbinger and R. Kohley and B. Kubik and M. Kümmel and M. Kunz and H. Kurki-Suonio and S. Ligori and P. B. Lilje and I. Lloro and O. Mansutti and O. Marggraf and K. Markovic and F. Marulli and R. Massey and S. Maurogordato and M. Melchior and E. Merlin and G. Meylan and J. J. Mohr and M. Moresco and B. Morin and L. Moscardini and E. Munari and R. C. Nichol and C. Padilla and S. Paltani and J. Peacock and K. Pedersen and V. Pettorino and S. Pires and M. Poncet and L. Popa and L. Pozzetti and F. Raison and R. Rebolo and J. Rhodes and H. -W. Rix and M. Roncarelli and E. Rossetti and R. Saglia and P. Schneider and T. Schrabback and A. Secroun and G. Seidel and S. Serrano and C. Sirignano and G. Sirri and J. Skottfelt and L. Stanco and J. L. Starck and P. Tallada-Crespí and D. Tavagnacco and A. N. Taylor and H. I. Teplitz and R. Toledo-Moreo and F. Torradeflot and M. Trifoglio and E. A. Valentijn and L. Valenziano and G. A. Verdoes Kleijn and Y. Wang and N. Welikala and J. Weller and M. Wetzstein and G. Zamorani and J. Zoubian and S. Andreon and M. Baldi and S. Bardelli and A. Boucaud and S. Camera and G. Fabbian and R. Farinelli and J. Graciá-Carpio and D. Maino and E. Medinaceli and S. Mei and C. Neissner and G. Polenta and A. Renzi and E. Romelli and C. Rosset and F. Sureau and M. Tenti and T. Vassallo and E. Zucca and C. Baccigalupi and A. Balaguera-Antolínez and P. Battaglia and A. Biviano and S. Borgani and E. Bozzo and R. Cabanac and A. Cappi and S. Casas and G. Castignani and C. Colodro-Conde and J. Coupon and H. M. Courtois and J. Cuby and S. de la Torre and S. Desai and D. Di Ferdinando and H. Dole and M. Fabricius and M. Farina and P. G. Ferreira and F. Finelli and P. Flose-Reimberg and S. Fotopoulou and S. Galeotta and K. Ganga and G. Gozaliasl and I. M. Hook and E. Keihanen and C. C. Kirkpatrick and P. Liebing and V. Lindholm and G. Mainetti and M. Martinelli and N. Martinet and M. Maturi and H. J. McCracken and R. B. Metcalf and G. Morgante and J. Nightingale and A. Nucita and L. Patrizii and D. Potter and G. Riccio and A. G. Sánchez and D. Sapone and J. A. Schewtschenko and M. Schultheis and V. Scottez and R. Teyssier and I. Tutusaus and J. Valiviita and M. Viel and W. Vriend and L. Whittaker},
journal= {arXiv preprint arXiv:2108.01201},
year = {2022}
}
Comments
43 pages, 51 figures, submitted to A&A