Euclid preparation. Spectroscopy of active galactic nuclei with NISP
Abstract
The statistical distribution and evolution of key properties (e.g. accretion rate, mass, or spin) of active galactic nuclei (AGN), remain an open debate in astrophysics. The ESA Euclid space mission, launched on July 1st 2023, promises a breakthrough in this field. We create detailed mock catalogues of AGN spectra, from the rest-frame near-infrared down to the ultraviolet, including emission lines, to simulate what Euclid will observe for both obscured (type 2) and unobscured (type 1) AGN. We concentrate on the red grisms of the NISP instrument, which will be used for the wide-field survey, opening a new window for spectroscopic AGN studies in the near-infrared. We quantify the efficiency in the redshift determination as well as in retrieving the emission line flux of the H+[NII] complex as Euclid is mainly focused on this emission line as it is expected to be the brightest one in the probed redshift range. Spectroscopic redshifts are measured for 83% of the simulated AGN in the interval where the H+[NII] is visible (0.89<z<1.83 at a line flux erg s cm, encompassing the peak of AGN activity at ) within the spectral coverage of the red grism. Outside this redshift range, the measurement efficiency decreases significantly. Overall, a spectroscopic redshift is correctly determined for ~90% of type 2 AGN down to an emission line flux of erg s cm, and for type 1 AGN down to erg s cm. Recovered black hole mass values show a small offset with respect to the input values ~10%, but the agreement is good overall. With such a high spectroscopic coverage at z<2, we will be able to measure AGN demography, scaling relations, and clustering from the epoch of the peak of AGN activity down to the present-day Universe for hundreds of thousand AGN with homogeneous spectroscopic information.
Cite
@article{arxiv.2311.12096,
title = {Euclid preparation. Spectroscopy of active galactic nuclei with NISP},
author = {Euclid Collaboration and E. Lusso and S. Fotopoulou and M. Selwood and V. Allevato and G. Calderone and C. Mancini and M. Mignoli and M. Scodeggio and L. Bisigello and A. Feltre and F. Ricci and F. La Franca and D. Vergani and L. Gabarra and V. Le Brun and E. Maiorano and E. Palazzi and M. Moresco and G. Zamorani and G. Cresci and K. Jahnke and A. Humphrey and H. Landt and F. Mannucci and A. Marconi and L. Pozzetti and P. Salucci and M. Salvato and F. Shankar and L. Spinoglio and D. Stern and S. Serjeant and N. Aghanim and B. Altieri and A. Amara and S. Andreon and T. Auphan and N. Auricchio and M. Baldi and S. Bardelli and R. Bender and D. Bonino and E. Branchini and M. Brescia and J. Brinchmann and S. Camera and V. Capobianco and C. Carbone and J. Carretero and S. Casas and M. Castellano and S. Cavuoti and A. Cimatti and G. Congedo and C. J. Conselice and L. Conversi and Y. Copin and L. Corcione and F. Courbin and H. M. Courtois and J. Dinis and F. Dubath and C. A. J. Duncan and X. Dupac and S. Dusini and M. Farina and S. Farrens and S. Ferriol and N. Fourmanoit and M. Frailis and E. Franceschi and P. Franzetti and M. Fumana and S. Galeotta and B. Garilli and W. Gillard and B. Gillis and C. Giocoli and A. Grazian and F. Grupp and S. V. H. Haugan and W. Holmes and I. Hook and F. Hormuth and A. Hornstrup and M. Kümmel and E. Keihänen and S. Kermiche and B. Kubik and M. Kunz and H. Kurki-Suonio and S. Ligori and P. B. Lilje and V. Lindholm and I. Lloro and O. Mansutti and O. Marggraf and K. Markovic and N. Martinet and F. Marulli and R. Massey and E. Medinaceli and S. Mei and Y. Mellier and E. Merlin and G. Meylan and L. Moscardini and E. Munari and S. -M. Niemi and C. Padilla and S. Paltani and F. Pasian and K. Pedersen and W. J. Percival and V. Pettorino and G. Polenta and M. Poncet and L. A. Popa and F. Raison and R. Rebolo and A. Renzi and J. Rhodes and G. Riccio and E. Romelli and M. Roncarelli and E. Rossetti and R. Saglia and D. Sapone and B. Sartoris and P. Schneider and A. Secroun and G. Seidel and S. Serrano and C. Sirignano and G. Sirri and L. Stanco and C. Surace and P. Tallada-Crespí and A. N. Taylor and H. I. Teplitz and I. Tereno and R. Toledo-Moreo and F. Torradeflot and I. Tutusaus and E. A. Valentijn and L. Valenziano and T. Vassallo and A. Veropalumbo and D. Vibert and Y. Wang and J. Weller and J. Zoubian and E. Zucca and A. Biviano and M. Bolzonella and E. Bozzo and C. Burigana and C. Colodro-Conde and D. Di Ferdinando and J. Graciá-Carpio and G. Mainetti and N. Mauri and C. Neissner and Z. Sakr and V. Scottez and M. Tenti and M. Viel and M. Wiesmann and Y. Akrami and S. Anselmi and C. Baccigalupi and M. Ballardini and M. Bethermin and S. Borgani and A. S. Borlaff and S. Bruton and R. Cabanac and A. Calabro and A. Cappi and C. S. Carvalho and G. Castignani and T. Castro and G. Cañas-Herrera and K. C. Chambers and A. R. Cooray and J. Coupon and O. Cucciati and S. Davini and G. De Lucia and G. Desprez and S. Di Domizio and H. Dole and A. Díaz-Sánchez and J. A. Escartin Vigo and S. Escoffier and I. Ferrero and K. Ganga and J. García-Bellido and F. Giacomini and G. Gozaliasl and D. Guinet and A. Hall and H. Hildebrandt and A. Jiminez Muñoz and J. J. E. Kajava and V. Kansal and C. C. Kirkpatrick and L. Legrand and A. Loureiro and J. Macias-Perez and M. Magliocchetti and R. Maoli and M. Martinelli and C. J. A. P. Martins and S. Matthew and M. Maturi and L. Maurin and R. B. Metcalf and M. Migliaccio and P. Monaco and G. Morgante and S. Nadathur and L. Patrizii and A. Pezzotta and V. Popa and C. Porciani and D. Potter and M. Pöntinen and P. -F. Rocci and A. G. Sánchez and A. Schneider and E. Sefusatti and M. Sereno and A. Shulevski and P. Simon and A. Spurio Mancini and J. Stadel and S. A. Stanford and J. Steinwagner and G. Testera and R. Teyssier and S. Toft and S. Tosi and A. Troja and M. Tucci and C. Valieri and J. Valiviita and I. A. Zinchenko},
journal= {arXiv preprint arXiv:2311.12096},
year = {2024}
}
Comments
29 pages, 23 figures. Submitted to A&A, revised version