Infrared background signatures of the first black holes
Abstract
Angular fluctuations of the Near InfraRed Background (NIRB) intensity are observed up to scales . Their interpretation is challenging as even after removing the contribution from detected sources, the residual signal is times higher than expected from distant galaxies below the detection limit and first stars. We propose here a novel interpretation in which early, intermediate mass, accreting direct collapse black holes (DCBH), which are too faint to be detected individually in current surveys, could explain the observed fluctuations. We find that a population of highly obscured () DCBHs formed in metal-free halos with virial temperature K at , can explain the observed level (nW m sr of the 3.6 and 4.5 m fluctuations on scales . The signal on smaller scales is instead produced by undetected galaxies at low and intermediate redshifts. Albeit Compton-thick, at scales DCBHs produce a CXB (0.5-2 keV)-NIRB () cross-correlation signal of erg s cm nW m sr slightly dependent on the specific value of the absorbing gas column () adopted and in agreement with the recent measurements by \cite{2012arXiv1210.5302C}. At smaller scales the cross-correlation is dominated by the emission of high-mass X-ray binaries (HMXB) hosted by the same low-, undetected galaxies accounting for small scale NIRB fluctuations. These results outline the great potential of the NIRB as a tool to investigate the nature of the first galaxies and black holes.
Keywords
Cite
@article{arxiv.1305.5177,
title = {Infrared background signatures of the first black holes},
author = {Bin Yue and Andrea Ferrara and Ruben Salvaterra and Yidong Xu and Xuelei Chen},
journal= {arXiv preprint arXiv:1305.5177},
year = {2015}
}
Comments
27 pages, 8 figures, accepted for publication in MNRAS