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the HELLAS2XMM collaboration

Publications and source records attributed to the HELLAS2XMM collaboration.

3 recordsLinked to original sources

Unveiling obscured accretion

We present the latest determination of the X-ray (2-10 keV) AGN luminosity function accounting for the selection effect due to X-ray absorption. The main results are: 1) the inclusion of obscured AGN confirms the AGN differential luminosity evolution, but makes it less extreme than what is found selecting unobscured AGN in soft X-rays, and more similar to a pure luminosity evolution; 2) significant correlations are found between the fraction of obscured sources, the luminosity and the redshift, this fraction increasing toward both low AGN luminosities and high redshifts. We discuss our findings in a scenario for the formation and evolution of the structure in the Universe where the bulk of nuclear activity is produced at z=1-2. At the same redshifts also the star-formation rate reaches a maximum, and this age can therefore be regarded as the "golden age" for nuclear and galaxy activity. We discuss the current observational limits of this program and the improvements needed to obtain an unbiased census of the AGN and super-massive black hole (SMBH) population.

astro-ph

High Energy Large Area Surveys: optically obscured AGN and the history of accretion

Hard X-ray, large area surveys are a fundamental complement of ultra-deep, pencil beam surveys in obtaining a more complete coverage of the L-z plane, allowing to find luminous QSO in wide z ranges. Furthermore, results from these surveys can be used to make reliable predictions about the luminosity (and hence the redshift) of the sources in the deep surveys which have optical counterparts too faint to be observed with the present generation of optical telescopes. This allows us to obtain accurate luminosity functions on wide luminosity and redshift intervals.

astro-ph

Unconventional AGN in hard X-ray surveys

Extensive programs of follow-up observations of hard X-ray selected sources have unambiguosly revealed that the sources of the X-ray background are characterized by an extremely large dispersion in their optical magnitude and spectroscopic classification. Here we present the results of an attempt to understand the nature of the observed variety using a simple prescription for their optical to X-ray energy distribution.

astro-ph