English

Feeding and feedback in the powerful radio galaxy 3C 120

High Energy Astrophysical Phenomena 2017-03-29 v1

Abstract

We present the spectral analysis of a 200~ks observation of the broad-line radio galaxy 3C~120 performed with the high energy transmission grating (HETG) spectrometer on board the \emph{Chandra} X-ray Observatory. We find (i) a neutral absorption component intrinsic to the source with column density of logNH=20.67±0.05\text{log}N_H = 20.67\pm0.05~cm2^{-2}, (ii) no evidence for a warm absorber with an upper limit on the column density of just logNH<19.7\text{log}N_H < 19.7~cm2^{-2} assuming the typical ionization parameter logξ\xi\simeq2.5~erg~s1^{-1}~cm, the warm absorber may instead be replaced by (iii) a hot emitting gas with temperature kT0.7kT \simeq 0.7~keV observed as soft X-ray emission from ionized Fe L-shell lines which may originate from a kpc scale shocked bubble inflated by the AGN wind or jet with a shock velocity of about 1,000~km~s1^{-1} determined by the emission line width, (iv) a neutral Fe Kα\alpha line and accompanying emission lines indicative of a Compton-thick cold reflector with low reflection fraction R0.2R\simeq0.2, suggesting a large opening angle of the torus, (v) a highly ionized Fe~XXV emission feature indicative of photoionized gas with ionization parameter logξ\xi==3.750.38+0.273.75^{+0.27}_{-0.38}~erg~s1^{-1}~cm and a column density of logNH>22\text{log}N_H > 22~cm2^{-2} localized within \sim2~pc from the X-ray source, and (vi) possible signatures for a highly ionized disk wind. Together with previous evidence for intense molecular line emission, these results indicate that 3C~120 is likely a late state merger undergoing strong AGN feedback.

Keywords

Cite

@article{arxiv.1703.00516,
  title  = {Feeding and feedback in the powerful radio galaxy 3C 120},
  author = {F. Tombesi and R. F. Mushotzky and C. S. Reynolds and T. Kallman and J. N. Reeves and V. Braito and Y. Ueda and M. A. Leutenegger and B. J. Williams and L. Stawarz and M. Cappi},
  journal= {arXiv preprint arXiv:1703.00516},
  year   = {2017}
}

Comments

Accepted for publication in ApJ