The efficient low-mass Seyfert MCG-05-23-016
V. Beckmann (1,2,3), T.J.-L. Courvoisier (1,2), N. Gehrels (4), P., Lubinski (5,1), J. Malzac (6), P.-O. Petrucci (7), C. R. Shrader (4), S., Soldi (1,2) ((1) ISDC Data Centre for Astrophysics, (2) Observatoire de, Geneve, (3) UMBC, (4) ASD NASA/GSFC, (5) CAMK, (6) CESR

TL;DR
This study analyzes the X-ray spectrum of the Seyfert galaxy MCG-05-23-016, revealing its stable hard X-ray emission, high Eddington ratio, and potential early-stage black hole accretion, with implications for understanding supermassive black hole growth.
Contribution
The paper provides a detailed high-energy spectral analysis of MCG-05-23-016, highlighting its stability and high accretion rate, and suggests it as a case study for early supermassive black hole evolution.
Findings
Hard X-ray spectrum shows little variability.
Reflection component is weak or absent.
High Eddington ratio indicates early black hole growth stage.
Abstract
The Seyfert 1.9 galaxy MCG-05-23-016 has been shown to exhibit a complex X-ray spectrum. This source has moderate X-ray luminosity, hosts a comparably low-mass black hole, but accretes at a high Eddington rate, and allows us to study a super massive black hole in an early stage. Three observations of the INTEGRAL satellite simultaneous with pointed Swift/XRT observations performed from December 2006 to June 2007 are used in combination with public data from the INTEGRAL archive to study the variability of the hard X-ray components and to generate a high-quality spectrum from 1 to 150 keV. The AGN shows little variability in the hard X-ray spectrum, with some indication of a variation in the high-energy cut-off energy ranging from 50 keV to >>100 keV, with an electron plasma temperature in the 10 - 90 keV range. The reflection component is not evident and, if present, the reflected…
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