The Chandra COSMOS Legacy survey: the z>3 sample
S. Marchesi, F. Civano, M. Salvato, F. Shankar, A. Comastri, M. Elvis,, G. Lanzuisi, B. Trakhtenbrot, C. Vignali, G. Zamorani, V. Allevato, M. Brusa,, F.Fiore, R. Gilli, R. Griffiths, G. Hasinger, T. Miyaji, K. Schawinski, E., Treister, C.M. Urry

TL;DR
This study presents the largest high-redshift X-ray-selected AGN sample, analyzing their number counts and space density evolution from z=3 to 6.85, revealing a steep decline especially at lower luminosities and discrepancies with merger models.
Contribution
It provides the first comprehensive high-redshift AGN space density evolution analysis using X-ray data, including both spectroscopic and photometric redshifts, and compares findings with theoretical models.
Findings
Number counts decline at z>3, constraining X-ray background models.
High-luminosity AGN space density drops exponentially from z~3 to 6.
Obscured AGN may evolve differently than unobscured ones at high redshift.
Abstract
We present the largest high-redshift (3<z<6.85) sample of X-ray-selected active galactic nuclei (AGN) on a contiguous field, using sources detected in the Chandra COSMOS Legacy survey. The sample contains 174 sources, 87 with spectroscopic redshift, the other 87 with photometric redshift (z_phot). In this work we treat z_phot as a probability weighted sum of contributions, adding to our sample the contribution of sources with z_phot<3 but z_phot probability distribution >0 at z>3. We compute the number counts in the observed 0.5-2 keV band, finding a decline in the number of sources at z>3 and constraining phenomenological models of X-ray background. We compute the AGN space density at z>3 in two different luminosity bins. At higher luminosities (logL(2-10 keV) > 44.1 erg/s) the space density declines exponentially, dropping by a factor ~20 from z~3 to z~6. The observed decline is ~80%…
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