The Chandra Deep Protocluster Survey: Evidence for an Enhancement in the AGN Activity in the SSA22 Protocluster at z = 3.09
B. D. Lehmer, D. M. Alexander, J. E. Geach, Ian Smail, A. Basu-Zych,, F. E. Bauer, S. C. Chapman, Y. Matsuda, C. A. Scharf, M. Volonteri, T. Yamada

TL;DR
This study uses deep Chandra X-ray observations to show that the SSA22 protocluster at z=3.09 has a higher fraction of active galactic nuclei among Lyman break galaxies and Ly-alpha emitters than in less dense environments, indicating accelerated SMBH growth.
Contribution
It provides the first evidence of enhanced AGN activity in a high-redshift protocluster environment compared to the field, supporting models of accelerated galaxy and SMBH growth due to dense environments.
Findings
Higher AGN fraction in protocluster LBGs and LAEs than in the field.
Detected AGNs show significant X-ray absorption, indicating obscured SMBHs.
Enhanced merger activity likely drives accelerated SMBH growth.
Abstract
We present results from a new ultra-deep 400 ks Chandra observation of the SSA22 protocluster at z = 3.09. We have studied the X-ray properties of 234 z ~ 3 Lyman break galaxies (LBGs; protocluster and field) and 158 z = 3.09 Ly-alpha emitters (LAEs) in SSA22 to measure the influence of the high-density protocluster environment on the accretion activity of supermassive black holes (SMBHs) in these UV-selected star forming populations. We detect individually X-ray emission from active galactic nuclei (AGNs) in six LBGs and five LAEs; due to small overlap between the LBG and LAE source population, ten of these sources are unique. At least six and potentially eight of these sources are members of the protocluster. These sources have rest-frame 8-32 keV luminosities in the range of L_8-32 keV = (3-50) X 10^{43} ergs/s and an average observed-frame 2-8 keV to 0.5-2 keV band-ratio of ~0.8…
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