English

The obscured active nucleus of NGC 7172 as seen by NuSTAR

High Energy Astrophysical Phenomena 2021-05-19 v2

Abstract

We analyse the properties of the X-ray emission from Seyfert 2 NGC 7172 which are based on the 32 ks observational data from NuSTAR in 2014. This source showed a constant Compton-thin obscuration NH81022cm2N_{H}\approx 8\cdot 10^{22} cm^{-2}, which is similar to that observed by XMM-Newton, Suzaku, ASCA and BeppoSAX over past 30 years. We revealed the presence of a moderate reflection component with <R>~0.44 and a narrow FeK{\alpha} line with 6714+1367^{+13}_{-14} eV. The applied numerical models of torus confirmed the Compton-thin type of the Seyfert nucleus and allowed us to obtain an estimate of the torus opening angle Θt59deg{\Theta}_{t}\sim59\deg and inclination Θi61deg{\Theta}_{i}\sim61\deg. Using the observation data of previous observation, we demonstrate also the long-term variability of intrinsic luminosity LintrL_{intr}(2-10 keV) almost by order and EW FeKαFeK_{\alpha} by factor 4\sim4 on a timescale of 12\sim12 years, that coincides to the distance of dd\sim3.7 pc between central source and reprocessing medium. Such changes of intrinsic luminosity without changes in NHN_{H} value indicate the variability of a central source. In the same time the spectral analysis results with the presence of the lag between variability of intrinsic luminosity LintrL_{intr}(2-10 keV) and EW FeKαFeK_{\alpha}, as well as a behaviour of intensity IFeKαI_{FeK_{\alpha}} of the line are in agreement with the scenario, where observed FeKαFeK_{\alpha} line is generated in a distant gas-dust torus.

Keywords

Cite

@article{arxiv.1808.08457,
  title  = {The obscured active nucleus of NGC 7172 as seen by NuSTAR},
  author = {Anatoliy Vasylenko},
  journal= {arXiv preprint arXiv:1808.08457},
  year   = {2021}
}

Comments

20 pages, 6 figures, in Russian, accepted for publication in Kin. and Phys. of Celestial Bodies