arXiv · 1004.2790
The XMM-Newton Wide-Field Survey in the COSMOS field (XMM-COSMOS): demography and multiwavelength properties of obscured and unobscured luminous AGN
Abstract
We report the final optical identifications of the medium-depth (~60 ksec), contiguous (2 deg^2) XMM-Newton survey of the COSMOS field. XMM-Newton has detected ~800 X-ray sources down to limiting fluxes of ~5x10^{-16}, ~3x10^{-15}, and ~7x10^{-15} erg/cm2/s in the 0.5-2 keV, 2-10 keV and 5-10 keV bands, respectively. The work is complemented by an extensive collection of multi-wavelength data from 24 micron to UV, available from the COSMOS survey, for each of the X-ray sources, including spectroscopic redshifts for ~50% of the sample, and high-quality photometric redshifts for the rest. The XMM and multiwavelength flux limits are well matched: 1760 (98%) of the X-ray sources have optical counterparts, 1711 (~95%) have IRAC counterparts, and 1394 (~78%) have MIPS 24micron detections. Thanks to the redshift completeness (almost 100%) we were able to constrain the high-luminosity tail of the X-ray luminosity function confirming that the peak of the number density of logL_X>44.5 AGN is at z~2. Spectroscopically-identified obscured and unobscured AGN, as well as normal and starforming galaxies, present well-defined optical and infrared properties. We devised a robust method to identify a sample of ~150 high redshift (z>1), obscured AGN candidates for which optical spectroscopy is not available. We were able to determine that the fraction of the obscured AGN population at the highest (L_X>10^{44} erg s^{-1}) X-ray luminosity is ~15-30% when selection effects are taken into account, providing an important observational constraint for X-ray background synthesis. We studied in detail the optical spectrum and the overall spectral energy distribution of a prototypical Type 2 QSO, caught in a stage transitioning from being starburst dominated to AGN dominated, which was possible to isolate only thanks to the combination of X-ray and infrared observations.
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M. Brusa, F. Civano, A. Comastri, T. Miyaji, M. Salvato, G. Zamorani, N. Cappelluti, F. Fiore, G. Hasinger, V. Mainieri, A. Merloni, A. Bongiorno, P. Capak, M. Elvis, R. Gilli, H. Hao, K. Jahnke, A. M. Koekemoer, O. Ilbert, E. Le Floc'h, E. Lusso, M. Mignoli, E. Schinnerer, J. D. Silverman, E. Treister, J. D. Trump, C. Vignali, M. Zamojski, T. Aldcroft, H. Aussel, S. Bardelli, M. Bolzonella, A. Cappi, K. Caputi, T. Contini, A. Finoguenov, A. Fruscione, B. Garilli, C. D. Impey, A. Iovino, K. Iwasawa, P. Kampczyk, J. Kartaltepe, J. P. Kneib, C. Knobel, K. Kovac, F. Lamareille, J-F. Leborgne, V. Le Brun, O. Le Fevre, S. J. Lilly, C. Maier, H. J. McCracken, R. Pello, Y-J Peng, E. Perez-Montero, L. de Ravel, D. Sanders, M. Scodeggio, N. Z. Scoville, M. Tanaka, Y. Taniguchi, L. Tasca, S. de la Torre, L. Tresse, D. Vergani, E. Zucca. 2010-04-20. The XMM-Newton Wide-Field Survey in the COSMOS field (XMM-COSMOS): demography and multiwavelength properties of obscured and unobscured luminous AGN. https://doi.org/10.1088/0004-637x%2F716%2F1%2F348
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