Broad He I 1.08 μm absorption from the obscurer in the active galaxy NGC 5548
arXiv:2010.10902 · doi:10.1093/mnras/staa3301
Abstract
The nucleus of the active galaxy NGC 5548 was the target of two intensive spectroscopic monitoring campaigns at X-ray, ultraviolet (UV), and optical frequencies in 2013/14. These campaigns detected the presence of a massive obscuration event. In 2016/17, Landt et al. conducted a near-IR spectroscopic monitoring campaign on NGC 5548 and discovered He i 1.08 μm absorption. Here we decompose this absorption into its components and study its time variability. We attribute the narrow He i absorption lines to the warm absorber and, as for the newly appeared low-ionization warm absorber lines in the UV, their presence is most likely due to a reduction in ionization parameter caused by the obscurer. The observed variability of the narrow He i absorption is consistent with what is expected for the warm absorber. Most importantly, we also detect fast, broad He i absorption, which we attribute to the obscurer. This He i broad absorption, which is indicative of a high-column density gas, is unsaturated and variable on time-scales of a few months. The observed variability of the obscurer is mainly due to changes in ionization, although density changes also play a role. We test the physical cycle model of Dehghanian et al. which proposes that helium recombination can account for how the obscurer influences the physics of the warm absorber gas. Our results support their model, but also indicate that the reality might be more complex.
13 pages, 14 figures, accepted for publication in MNRAS
References in corpus (17)
- A fast and long-lived outflow from the supermassive black hole in NGC 5548
- Space Telescope and Optical Reverberation Mapping Project. I. Ultraviolet Observations of the Seyfert 1 Galaxy NGC 5548 with the Cosmic Origins Spectrograph on Hubble Space Telescope
- Dust inflated accretion disc as the origin of the Broad Line Region in Active Galactic Nuclei
- Quasar Broad Absorption Line Variability on Multi-Year Time Scales
- The Near-Infrared Broad Emission Line Region of Active Galactic Nuclei -- I. The Observations
- Space Telescope and Optical Reverberation Mapping Project. V. Optical Spectroscopic Campaign and Emission-Line Analysis for NGC 5548
- Broad Absorption Line Variability in Repeat Quasar Observations from the Sloan Digital Sky Survey
- Anatomy of the AGN in NGC 5548: II. The Spatial, Temporal and Physical Nature of the Outflow from HST/COS Observations
- Space Telescope and Optical Reverberation Mapping Project. IX. Velocity-Delay Maps for Broad Emission Lines in NGC 5548
- The Sloan Digital Sky Survey Reverberation Mapping Project: Rapid CIV Broad Absorption Line Variability
- Failed radiatively Accelerated Dusty Outflow model of the Broad Line Region in Active Galactic Nuclei. I. Analytical solution
- Black-hole-regulated star formation in massive galaxies
- Stratified disc wind models for the AGN broad-line region: ultraviolet, optical and X-ray properties
- The dust origin of the Broad Line Region and the model consequences for AGN unification scheme
- NGC 5548: The AGN Energy Budget Problem and the Geometry of the Broad-Line Region and Torus
- Incoherent fast variability of X-ray obscurers. The case of NGC 3783
- BLR size in Realistic FRADO Model: The role of shielding effect
Cited by in corpus (9)
- RUBIES: JWST/NIRSpec Confirmation of an Infrared-luminous, Broad-line Little Red Dot with an Ionized Outflow
- 10-Year Transformation of the Obscuring Wind in NGC 5548
- Multi-wavelength observations of the obscuring wind in the radio-quiet quasar MR 2251-178
- Transient obscuration event captured in NGC 3227 III. Photoionization modeling of the X-ray obscuration event in 2019
- Broad-line region in active galactic nuclei: Dusty or dustless?
- Multiple locations of near-infrared coronal lines in NGC 5548
- AGN STORM 2: I. First results: A Change in the Weather of Mrk 817
- Application of the FRADO model of BLR formation to the Seyfert galaxy NGC 5548 and the first step toward determining the Hubble constant
- Detection of an Unidentified Soft X-ray Emission Feature in NGC 5548