The central engine of the highest redshift blazar
Silvia Belladitta, Alessandro Caccianiga, Alessandro Diana, Alberto, Moretti, Paola Severgnini, Marco Pedani, Letizia P. Cassar\`a, Cristiana, Spingola, Luca Ighina, Andrea Rossi, Roberto Della Ceca

TL;DR
This paper reports the discovery and analysis of the highest redshift blazar, PSO J0309+27, revealing a supermassive black hole with mass and luminosity challenging existing early universe growth models.
Contribution
It provides the first detailed characterization of a z~6.1 blazar, including black hole mass, luminosity, and accretion properties, offering new insights into early SMBH growth.
Findings
Black hole mass of approximately 1.45 billion solar masses.
The SMBH is accreting at about 44% of the Eddington limit.
The existence of such a massive SMBH at z~6.1 challenges current growth models.
Abstract
We report on a LUCI/Large Binocular Telescope near-infrared (NIR) spectrum of PSO J030947.49+271757.31 (hereafter PSO J0309+27), the highest redshift blazar known to date (z6.1). From the C1549 broad emission line we found that PSO J0309+27 is powered by a 1.4510M supermassive black hole (SMBH) with a bolometric luminosity of 810 erg s and an Eddington ratio equal to 0.44. We also obtained new photometric observations with the Telescopio Nazionale Galileo in J and K bands to better constrain the NIR Spectral Energy Distribution of the source. Thanks to these observations, we were able to model the accretion disk and to derive an independent estimate of the black hole mass of PSO J0309+27, confirming the value inferred from the virial technique. The existence of such a massive…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations · Pulsars and Gravitational Waves Research
