The first hard X-ray power spectral density functions of active galactic NUCLEUS

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Abstract

We present results of our power spectral density (PSD) analysis of 30 active galactic nuclei (AGNs) using the 58 month light curves from Swift's Burst Alert Telescope (BAT) in the 14-150 keV band. PSDs were fit using a Monte Carlo based algorithm to take into account windowing effects and measurement error. All but one source were found to be fit very well using an unbroken power law with a slope of ∼-1, consistent at low frequencies with previous studies in the 2-10 keV band, with no evidence of a break in the PSD. For five of the highest signal-to-noise ratio sources, we tested the energy dependence of the PSD and found no significant difference in the PSD at different energies. Unlike previous studies of X-ray variability in AGNs, we do not find any significant correlations between the hard X-ray variability and different properties of the AGN including luminosity and black hole mass. The lack of break frequencies and correlations seem to indicate that AGNs are similar to the high state of Galactic black holes. © 2013. The American Astronomical Society. All rights reserved.

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Shimizu, T. T., & Mushotzky, R. F. (2013). The first hard X-ray power spectral density functions of active galactic NUCLEUS. Astrophysical Journal, 770(1). https://doi.org/10.1088/0004-637X/770/1/60

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