A quasar shedding its dust cocoon at redshift 2
Weimin Yi, W. N. Brandt, Q. Ni, Luis C. Ho, Bin Luo, Wei Yan, D. P., Schneider, Jeremiah D.Paul, Richard M. Plotkin, Jinyi Yang, Feige Wang,, Zhicheng He, Chen Chen, Xue-Bing Wu, Jin-Ming Bai

TL;DR
This paper presents detailed multi-wavelength observations of a dust-reddened quasar at redshift 2, revealing its transition from a LoBAL to HiBAL state, with implications for quasar evolution and feedback mechanisms.
Contribution
It provides the first near-IR spectroscopy and comprehensive analysis of a quasar undergoing BAL transformation, highlighting the role of nuclear winds in quasar evolution.
Findings
Confirmed the quasar's WLQ nature and BAL transformation.
Estimated black hole mass and Eddington ratio indicating rapid accretion.
Measured wind kinetic power sufficient for quasar feedback.
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 using H compared to using \mgii\ from the literature, signifying an extreme \mgii\ blueshift of \kms\ relative to H. Using the H-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 and , indicative of being in a rapidly accreting phase. Our investigations confirm the WLQ nature and the LoBALHiBAL transformation, along with a factor of 2 increase in the…
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