X-ray source counts in the COSMOS field
N. Cappelluti, G. Hasinger, M. Brusa, A. Comastri, G. Zamorani, H., Boehringer, H. Brunner, F. Civano, A. Finoguenov, F. Fiore, R. Gilli, R. E., Griffiths, V. Mainieri, I. Matute, T. Miyaji, J. Silverman

TL;DR
This paper analyzes X-ray source counts in the COSMOS field using XMM-Newton data, deriving logN-logS relations across multiple energy bands and comparing results with previous surveys and models.
Contribution
It provides new X-ray source count measurements in the COSMOS field, extending flux limits and validating models with improved statistical analysis.
Findings
Good agreement with previous X-ray background models
Observed normalization differences explained by cosmic variance
Derived source counts down to faint flux limits
Abstract
We present the analysis of the source counts in the XMM-COSMOS survey using data of the first year of XMM-Newton observations. The survey covers ~2 deg^2 within the region of sky bounded by 9^h57.5^m<R.A.<10^h03.5^m; 1^d27.5^m<DEC<2^d57.5^m with a total net integration time of 504 ks. Using a maximum likelihood algorithm we detected a total of 1390 sources at least in one band. Using Monte Carlo simulations to estimate the sky coverage we produced the logN-logS relations. These relations have been then derived in the 0.5--2 keV, 2--10 keV and 5--10 keV energy bands, down to flux limits of 7.2x10^-16 erg cm^-2 s^-1, 4.0x10^-15 erg cm^-2 s^-1 and 9.7x10^-15 erg cm^-2 s^-1, respectively. These relations have been compared to previous X-ray survey and to the most recent X-ray background model finding an excellent agreement. The slightly different normalizations observed in the source counts…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena · Gamma-ray bursts and supernovae
