The 4 Ms Chandra Deep Field-South Number Counts Apportioned by Source Class: Pervasive Active Galactic Nuclei and the Ascent of Normal Galaxies
B.D. Lehmer, Y.Q. Xue, W.N. Brandt, D.M. Alexander, F.E. Bauer, M., Brusa, A. Comastri, R. Gilli, A.E. Hornschemeier, B. Luo, M. Paolillo, A., Ptak, O. Shemmer, D.P. Schneider, P. Tozzi, C. Vignali

TL;DR
This study measures detailed X-ray source counts in the deepest Chandra survey, revealing the dominance of AGNs at faint fluxes and the rising contribution of normal galaxies, with a novel Bayesian method enabling detection of fainter sources.
Contribution
Introduces a new Bayesian approach to accurately measure X-ray number counts down to fainter flux levels than previous studies, across multiple source populations.
Findings
AGNs dominate X-ray counts down to the faintest fluxes.
Normal galaxies significantly contribute to counts at faint fluxes.
Future deeper surveys will detect many distant normal galaxies.
Abstract
We present 0.5-2 keV, 2-8 keV, 4-8 keV, and 0.5-8 keV cumulative and differential number counts (logN-logS) measurements for the recently completed ~4 Ms Chandra Deep Field-South (CDF-S) survey, the deepest X-ray survey to date. We implement a new Bayesian approach, which allows reliable calculation of number counts down to flux limits that are factors of ~1.9-4.3 times fainter than the previously deepest number-counts investigations. In the soft band, the most sensitive bandpass in our analysis, the ~4 Ms CDF-S reaches a maximum source density of ~27,800 deg-2. By virtue of the exquisite X-ray and multiwavelength data available in the CDF-S, we are able to measure the number counts from a variety of source populations (active galactic nuclei [AGNs], normal galaxies, and Galactic stars) and subpopulations (as a function of redshift, AGN absorption, luminosity, and galaxy morphology),…
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