English

A Deeply Buried Narrow-Line Seyfert 1 Nucleus Uncovered in Scattered Light

Astrophysics of Galaxies 2019-10-14 v2

Abstract

We present spectropolarimetric and spectrophotometric observations of the peculiar active galactic nucleus (AGN) SDSS J120300.19+162443.7 (hereafter J1203+1624) at z=0.1656z=0.1656. Its optical total flux spectra clearly show broad emission lines (BELs) in Hα\alpha and Hβ\beta. After removal of narrow emission lines (NELs), the full width at half maximum of the lorentzian BEL is FWHMBEL1,270FWHM_{\rm BEL} \approx 1,270 km s1^{-1}, fulfilling the conventional definition of a narrow line Seyfert 1 (NLS1) galaxy. However, its NELs are unprecedentedly strong when compared to type 1AGNs. This, together with its large MIR excess (gW4=13.172g-W_4 = 13.172 mag), implies that the observer and the narrow emission line region (NELR) might see a different ionization continuum. Our optical spectropolarimetry confirms its type 2 nature by detecting a polarized blue continuum and Balmer BELs (FWHMPolarized BEL1,183FWHM_{\rm Polarized~BEL} \approx 1,183 km s1^{-1}), with a high polarization degree of >20> 20% in the blue wing. The mass and Eddington rate of the central black hole is estimated based on both transmitted and scattered AGN radiation, which is M<2.9×107MM_{\bullet} < 2.9 \times 10^7 M_\odot and Lbol/LEdd>1.5L_{\rm bol}/L_{\rm Edd} > 1.5. Severe extinction of the AGN emission also enables a clear view of the compact host galaxy. Discovery of J1203+1624 suggests that NLS1 follows AGN unfication scheme, studying of its analogs could blaze a new trail for exploring the connection between black hole growth and star formation in the host galaxy. Interesting features of J1203+1624 like the peculiar NELs, inflowing scattering clouds within sublimation radius are worth detailed follow-ups in the future.

Keywords

Cite

@article{arxiv.1811.06674,
  title  = {A Deeply Buried Narrow-Line Seyfert 1 Nucleus Uncovered in Scattered Light},
  author = {Xiang Pan and Honglin Lu and S. Komossa and Dawei Xu and Weimin Yuan and Luming Sun and Paul S. Smith and Shaohua Zhang and Peng Jiang and Chenwei Yang and Wenjuan Liu and Ning Jiang and Y. E. Rashed and A. Eckart and Jens Dierkes and Hongyan Zhou},
  journal= {arXiv preprint arXiv:1811.06674},
  year   = {2019}
}

Comments

9 pages, 6 figures