Faint progenitors of luminous quasars: why don't we see them?
arXiv:1612.04188 · doi:10.1093/mnras/stw3243
Abstract
Observational searches for faint active nuclei at have been extremely elusive, with a few candidates whose high- nature is still to be confirmed. Interpreting this lack of detections is crucial to improve our understanding of high- supermassive black holes (SMBHs) formation and growth. In this work, we present a model for the emission of accreting BHs in the X-ray band, taking into account super-Eddington accretion, which can be very common in gas-rich systems at high-. We compute the spectral energy distribution for a sample of active galaxies simulated in a cosmological context, which represent the progenitors of a SMBH with . We find an average Compton thick fraction of and large typical column densities (). However, faint progenitors are still luminous enough to be detected in the X-ray band of current surveys. Even accounting for a maximum obscuration effect, the number of detectable BHs is reduced at most by a factor 2. In our simulated sample, observations of faint quasars are mainly limited by their very low active fraction (), which is the result of short, super-critical growth episodes. We suggest that to detect high- SMBHs progenitors, large area surveys with shallower sensitivities, such as Cosmos Legacy and XMM-LSS+XXL, are to be preferred with respect to deep surveys probing smaller fields, such as CDF-S.
12 pages, 9 figures, accepted for publication in MNRAS
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