A New Hope for Obscured AGN: The PRIMA-NewAthena Alliance

Fuente: arXiv
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Main Authors: Barchiesi, Luigi, Carrera, F. J., Vignali, C., Pozzi, F., Marchetti, L., Gruppioni, C., Delvecchio, I., Bisigello, L., Calura, F., Aird, J., Vaccari, M.
Format: Preprint
Published: 2025
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author Barchiesi, Luigi
Carrera, F. J.
Vignali, C.
Pozzi, F.
Marchetti, L.
Gruppioni, C.
Delvecchio, I.
Bisigello, L.
Calura, F.
Aird, J.
Vaccari, M.
author_facet Barchiesi, Luigi
Carrera, F. J.
Vignali, C.
Pozzi, F.
Marchetti, L.
Gruppioni, C.
Delvecchio, I.
Bisigello, L.
Calura, F.
Aird, J.
Vaccari, M.
contents Understanding the AGN-galaxy co-evolution, feedback processes, and the evolution of Black Hole Accretion rate Density (BHAD) requires accurately estimating the contribution of obscured Active Galactic Nuclei (AGN). However, detecting these sources is challenging due to significant extinction at the wavelengths typically used to trace their emission. We evaluate the capabilities of the proposed far-infrared observatory PRIMA and its synergies with the X-ray observatory NewAthena in detecting AGN and in measuring the BHAD. Starting from X-ray background synthesis models, we simulate the performance of NewAthena and of PRIMA in Deep and Wide surveys. Our results show that the combination of these facilities is a powerful tool for selecting and characterising all types of AGN. While NewAthena is particularly effective at detecting the most luminous, the unobscured, and the moderately obscured AGN, PRIMA excels at identifying heavily obscured sources, including Compton-thick AGN (of which we expect 7500 detections per deg$^2$). We find that PRIMA will detect 60 times more sources than Herschel over the same area and will allow us to accurately measure the BHAD evolution up to z=8, better than any current IR or X-ray survey, finally revealing the true contribution of Compton-thick AGN to the BHAD evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2503_19915
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A New Hope for Obscured AGN: The PRIMA-NewAthena Alliance
Barchiesi, Luigi
Carrera, F. J.
Vignali, C.
Pozzi, F.
Marchetti, L.
Gruppioni, C.
Delvecchio, I.
Bisigello, L.
Calura, F.
Aird, J.
Vaccari, M.
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
Understanding the AGN-galaxy co-evolution, feedback processes, and the evolution of Black Hole Accretion rate Density (BHAD) requires accurately estimating the contribution of obscured Active Galactic Nuclei (AGN). However, detecting these sources is challenging due to significant extinction at the wavelengths typically used to trace their emission. We evaluate the capabilities of the proposed far-infrared observatory PRIMA and its synergies with the X-ray observatory NewAthena in detecting AGN and in measuring the BHAD. Starting from X-ray background synthesis models, we simulate the performance of NewAthena and of PRIMA in Deep and Wide surveys. Our results show that the combination of these facilities is a powerful tool for selecting and characterising all types of AGN. While NewAthena is particularly effective at detecting the most luminous, the unobscured, and the moderately obscured AGN, PRIMA excels at identifying heavily obscured sources, including Compton-thick AGN (of which we expect 7500 detections per deg$^2$). We find that PRIMA will detect 60 times more sources than Herschel over the same area and will allow us to accurately measure the BHAD evolution up to z=8, better than any current IR or X-ray survey, finally revealing the true contribution of Compton-thick AGN to the BHAD evolution.
title A New Hope for Obscured AGN: The PRIMA-NewAthena Alliance
topic Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2503.19915