Skip to content

Gone with the wind? Potential gas inflow in the broad-line region of a QSO at z=0.287 traced by time-varying Balmer absorption

Xihan Ji, Dominic J. Walton, Francesco D'Eugenio, Ignas Juodžbalis, Vasily Belokurov, Andrew C. Fabian, Roberto Maiolino, Jiamu Huang, Douglas N. C. Lin

astro-ph.GAarXiv:2609.25224

Abstract

We report spectroscopic observations of a remarkable QSO, J115724.80-000455.56 at z=0.287 from the Dark Energy Spectroscopic Instrument (DESI) survey. This QSO exhibits variability in its hydrogen Balmer absorption over a time interval of 10 months in the observed frame between 2021 and 2022. The observed Balmer absorption can be decomposed into two components with distinct kinematics: a non-varying, "stationary" component and a varying, "dynamic" component. Both absorbers have gas column densities of N H 1022~ cm-2 and likely have densities of n H 108~ cm-3. We inferred small effective physical sizes of 10-3 pc for the absorbers, which, together with the time variability, suggests that the absorption occurs in the broad-line region (BLR). The reshifted centroid velocities of both absorbers imply an inflow, where the inferred mass inflow rate is comparable to the single-epoch mass accretion rate of this QSO. The 2022 epoch of this QSO further reveals a 10% change in the column density over 2 months, indicating the gas inflow might be continuous. We also obtained new X-ray observations using the Einstein~Probe, which reveals an X-ray-to-bolometric luminosity ratio significantly below the general AGN population. The X-ray weakness is consistent with strong gas obscuration with N H= 4.0+ 1.6- 1.5×1023~ cm-2. The substantially higher gas obscuration seen in the X-rays compared to the optical possibly indicates a warm absorber inside the BLR or merger-driven enhancement of the galactic scale obscuration consistent with optical imaging. This QSO might thus represent an active feeding phase after a recent gas-rich merger.

Create a lesson