HYPerluminous quasars at the Epoch of ReionizatION (HYPERION). A new regime for the X-ray nuclear properties of the first quasars
L. Zappacosta, E. Piconcelli, F. Fiore, I. Saccheo, R. Valiante, C., Vignali, F. Vito, M. Volonteri, M. Bischetti, A. Comastri, C. Done, M. Elvis,, E. Giallongo, F. La Franca, G. Lanzuisi, M. Laurenti, G. Miniutti, A., Bongiorno, M. Brusa, F. Civano, S. Carniani, V. D'Odorico

TL;DR
This study investigates the X-ray properties of the earliest luminous quasars at the Epoch of Reionization, revealing a steeper spectral slope than lower-redshift quasars, indicating potential evolution in quasar physics.
Contribution
First detailed X-ray spectral analysis of a high-redshift quasar sample, uncovering a steeper photon index and suggesting evolution in quasar X-ray emission properties over cosmic time.
Findings
Steep average photon index (~2.4) in high-z quasars
No significant absorption detected in the sample
Indications of higher soft X-ray emission compared to UV expectations
Abstract
The existence of luminous quasars (QSO) at the Epoch of Reionization (EoR; i.e. z>6) powered by supermassive black holes (SMBH) with masses challenges models of early SMBH formation. To shed light on the nature of these sources we started a multiwavelength programme based on a sample of 18 HYPerluminous quasars at the Epoch of ReionizatION (HYPERION). These are the luminous QSOs whose SMBH must have had the fastest mass growth during the Universe first Gyr. In this paper we present the HYPERION sample and report on the first of the 3 years planned observations of the 2.4 Ms XMM-Newton Multi-Year Heritage program on which HYPERION is based. The goal of this program is to accurately characterize the X-ray nuclear properties of QSOs at the EoR. Through a joint X-ray spectral analysis of 10 sources, in the rest-frame keV range, we report a steep average…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena · Astrophysics and Cosmic Phenomena
