Revisit of Local X-ray Luminosity Function of Active Galactic Nuclei with the MAXI Extragalactic Survey
Yoshihiro Ueda, Kazuo Hiroi, Naoki Isobe, Masaaki Hayashida, Satoshi, Eguchi, Mutsumi Sugizaki, Nobuyuki Kawai, Hiroshi Tsunemi, Tatehiro Mihara,, Masaru Matsuoka, Masaki Ishikawa, Masashi Kimura, Hiroki Kitayama, Mitsuhiro, Kohama, Takanori Matsumura, Mikio Morii

TL;DR
This study constructs a new local X-ray luminosity function for Compton-thin AGNs using MAXI data, confirming luminosity-dependent absorption fractions and spectral properties, and comparing results across different energy bands.
Contribution
It provides the first MAXI-based luminosity function for local AGNs, revealing luminosity-dependent spectral characteristics and differences from previous surveys.
Findings
Absorbed AGN fraction decreases with luminosity.
Luminosity function fits a double power-law model.
Spectral index varies with luminosity, affecting band comparisons.
Abstract
We construct a new X-ray (2--10 keV) luminosity function of Compton-thin active galactic nuclei (AGNs) in the local universe, using the first MAXI/GSC source catalog surveyed in the 4--10 keV band. The sample consists of 37 non-blazar AGNs at , whose identification is highly () complete. We confirm the trend that the fraction of absorbed AGNs with cm rapidly decreases against luminosity (), from 0.730.25 at erg s to 0.12 at erg s. The obtained luminosity function is well fitted with a smoothly connected double power-law model whose indices are (fixed) and below and above the break luminosity, ergs s, respectively. While the result of the MAXI/GSC agrees well with that of…
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