Can the unresolved X-ray background be explained by emission from the optically-detected faint galaxies of the GOODS project?
arXiv:astro-ph/0602605 · doi:10.1111/j.1365-2966.2006.10240.x
Abstract
The emission from individual X-ray sources in the Chandra Deep Fields and XMM-Newton Lockman Hole shows that almost half of the hard X-ray background above 6 keV is unresolved and implies the existence of a missing population of heavily obscured active galactic nuclei (AGN). We have stacked the 0.5-8 keV X-ray emission from optical sources in the Great Observatories Origins Deep Survey (GOODS; which covers the Chandra Deep Fields) to determine whether these galaxies, which are individually undetected in X-rays, are hosting the hypothesised missing AGN. In the 0.5-6 keV energy range the stacked-source emission corresponds to the remaining 10-20 per cent of the total background -- the fraction that has not been resolved by Chandra. The spectrum of the stacked emission is consistent with starburst activity or weak AGN emission. In the 6-8 keV band, we find that upper limits to the stacked X-ray intensity from the GOODS galaxies are consistent with the ~40 per cent of the total background that remains unresolved, but further selection refinement is required to identify the X-ray sources and confirm their contribution.
7 pages, 1 figure, accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (8)
- Multiwavelength study of massive galaxies at z~2. II. Widespread Compton thick AGN and the concurrent growth of black holes and bulges
- Unveiling obscured accretion in the Chandra Deep Field South
- Extragalactic Inverse Compton Light from Dark Matter Annihilation and the Pamela Positron Excess
- The XMM-Newton serendipitous survey IV. The AXIS X-ray source counts and angular clustering
- Constraints on light bending and reflection from the hard X-ray background
- Can Chandra resolve the remaining cosmic X-ray background?
- Chandra Stacking Constraints on the Contribution of 24 micron Spitzer Sources to the Unresolved Cosmic X-ray Background
- Astrophysics in 2006