Quasars at early redshifts (z>6) with companion galaxies offer unique insights into the growth and evolution of the first supermassive black holes. Here, we report on a 150 ks Chandra observation of PSO J308.0416−21.2339, a z=6.23 quasar with a merging companion galaxy identified in [C II] and rest-frame UV emission. With 72.3−8.6+9.6 net counts, we find that PSO J308.0416−21.2339 is powerful (LX=2.31−0.76+1.14×1045ergs−1cm−2 in rest-frame 2.0−10.0 keV) yet soft (spectral power-law index Γ=2.39−0.36+0.37 and optical-to-X-ray slope αOX=−1.41±0.11). In addition, we detect three hard-energy photons 2.′′0 to the west of the main quasar, cospatial with the brightest UV emission of the merging companion. As no soft-energy photons are detected in the same area, this is potentially indicative of a highly-obscured source. With conservative assumptions, and accounting for both background fluctuations and the extended wings of the quasar's emission, these photons only have a probability P=0.021 of happening by chance. If confirmed by deeper observations, this system is the first high redshift quasar and companion individually detected in X-rays and is likely a dual AGN.
@article{arxiv.1909.08619,
title = {X-ray Observations of a $z\sim6.2$ Quasar/Galaxy Merger},
author = {Thomas Connor and Eduardo Bañados and Daniel Stern and Roberto Decarli and Jan-Torge Schindler and Xiaohui Fan and Emanuele Paolo Farina and Chiara Mazzucchelli and John S. Mulchaey and Fabian Walter},
journal= {arXiv preprint arXiv:1909.08619},
year = {2019}
}
Comments
8 pages, 4 figures, published in the Astrophysical Journal. Revised to reflect accepted version