Discovery and characterization of 25 new quasars at 4.6 < z < 6.9 from wide-field multi-band surveys
Silvia Belladitta, Eduardo Ba\~nados, Zhang-Liang Xie, Roberto Decarli, Silvia Onorato, Jinyi Yang, Manuela Bischetti, Masafusa Onoue, Federica Loiacono, Laura N. Mart\'inez-Ram\'irez, Chiara Mazzucchelli, Frederick B. Davies, Julien Wolf, Jan-Torge Schindler, Xiaohui Fan

TL;DR
This study reports the discovery of 25 new high-redshift quasars through wide-field multi-band surveys, providing valuable insights into early Universe conditions and quasar properties at z>4.
Contribution
It presents the identification and spectroscopic analysis of 25 new quasars at 4.6<z<6.9, including radio-loud and blazar-like objects, expanding the known sample of early Universe quasars.
Findings
Discovered 25 new quasars at 4.6<z<6.9, including six at z≥6.5.
Identified a blazar-like quasar with extreme properties and X-ray detection.
Estimated black hole masses and Eddington ratios consistent with other high-z quasars.
Abstract
Luminous quasars at provide key insights into the early Universe. Their rarity necessitates wide-field multi-band surveys to efficiently separate them from the main astrophysical contaminants (i.e., ultracool dwarfs). To expand the sample of high- quasars, we conducted targeted selections using optical, infrared, and radio surveys, complemented by literature-based quasar candidate catalogs. In this paper, we report the discovery of \nqsos\ new quasars at (six at ), with between 25.4 and 27.0. We also present new spectra of six quasars we selected, but whose independent discovery has already been published in the literature. Three of the newly discovered quasars are strong radio emitters (L10erg s Hz). Among them, one source at exhibits typical blazar-like properties,…
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