English

A quasar shedding its dust cocoon at redshift 2

Astrophysics of Galaxies 2022-05-11 v1

Abstract

We present the first near-IR spectroscopy and joint analyses of multi-wavelength observations for SDSS J082747.14+425241.1, a dust-reddened, weak broad emission-line quasar (WLQ) undergoing a remarkable broad absorption line (BAL) transformation. The systemic redshift is more precisely measured to be z=2.070±0.001z=2.070\pm0.001 using Hβ\beta compared to z=2.040±0.003z=2.040\pm0.003 using \mgii\ from the literature, signifying an extreme \mgii\ blueshift of 2140±5302140\pm530 \kms\ relative to Hβ\beta. Using the Hβ\beta-based single-epoch scaling relation with a systematic uncertainty of 0.3 dex, its black hole (BH) mass and Eddington ratio are estimated to be MBH6.1×108MM_{\rm BH}\sim6.1\times10^8M_\odot and λEdd0.71\lambda_{\rm Edd}\sim0.71, indicative of being in a rapidly accreting phase. Our investigations confirm the WLQ nature and the LoBAL\rightarrowHiBAL transformation, along with a factor of 2 increase in the \mgii+\feii\ emission strength and a decrease of 0.1 in E(BV)E(B-V) over two decades. The kinetic power of this LoBAL wind at RR\sim15 pc from its BH is estimated to be \sim43\% of the Eddington luminosity, sufficient for quasar feedback upon its host galaxy albeit with an order-of-magnitude uncertainty. This quasar provides a clear example of the long-sought scenario where LoBAL quasars are surrounded by dust cocoons, and wide-angle nuclear winds play a key role in the transition for red quasars evolving into the commonly seen blue quasars.

Keywords

Cite

@article{arxiv.2203.07570,
  title  = {A quasar shedding its dust cocoon at redshift 2},
  author = {Weimin Yi and W. N. Brandt and Q. Ni and Luis C. Ho and Bin Luo and Wei Yan and D. P. Schneider and Jeremiah D. Paul and Richard M. Plotkin and Jinyi Yang and Feige Wang and Zhicheng He and Chen Chen and Xue-Bing Wu and Jin-Ming Bai},
  journal= {arXiv preprint arXiv:2203.07570},
  year   = {2022}
}

Comments

11 pages, 6 figures, accepted for publication in ApJ

R2 v1 2026-06-24T10:13:19.131Z