10-Year Transformation of the Obscuring Wind in NGC 5548
arXiv:2207.09464 · doi:10.3847/2041-8213/ac822f
Abstract
A decade ago the archetypal Seyfert-1 galaxy NGC 5548 was discovered to have undergone major spectral changes. The soft X-ray flux had dropped by a factor of 30 while new broad and blueshifted UV absorption lines appeared. This was explained by the emergence of a new obscuring wind from the accretion disk. Here we report on the striking long-term variability of the obscuring disk wind in NGC 5548 including new observations taken in 2021-2022 with the Swift Observatory and the Hubble Space Telescope's (HST) Cosmic Origins Spectrograph (COS). The X-ray spectral hardening as a result of obscuration has declined over the years, reaching its lowest in 2022 at which point we find the broad C IV UV absorption line to be nearly vanished. The associated narrow low-ionization UV absorption lines, produced previously when shielded from the X-rays, are also remarkably diminished in 2022. We find a highly significant correlation between the variabilities of the X-ray hardening and the equivalent width of the broad C IV absorption line, demonstrating that X-ray obscuration is inherently linked to disk winds. We derive for the first time a relation between the X-ray and UV covering fractions of the obscuring wind using its long-term evolution. The diminished X-ray obscuration and UV absorption are likely caused by an increasingly intermittent supply of outflowing streams from the accretion disk. This results in growing gaps and interstices in the clumpy disk wind, thereby reducing its covering fractions.
Accepted for publication in The Astrophysical Journal Letters (ApJL), 6 pages, 4 figures
References in corpus (11)
- An online repository of Swift/XRT light curves of GRBs
- A fast and long-lived outflow from the supermassive black hole in NGC 5548
- Unifying the micro and macro properties of AGN feeding and feedback
- Chasing obscuration in type-I AGN: discovery of an eclipsing clumpy wind at the outer broad-line region of NGC 3783
- Anatomy of the AGN in NGC 5548: II. The Spatial, Temporal and Physical Nature of the Outflow from HST/COS Observations
- Weak Hard X-ray Emission from Broad Absorption Line Quasars: Evidence for Intrinsic X-ray Weakness
- Changing-look event in NGC 3516: continuum or obscuration variability?
- Dynamical thermal instability in highly supersonic outflows
- Transient obscuration event captured in NGC 3227. I. Continuum model for the broadband spectral energy distribution
- The warm absorber in NGC 5548: The lean years
- Photoionisation Modelling of the X-ray Emission Line Regions within the Seyfert 2 AGN NGC 1068
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- Transient obscuration event captured in NGC 3227 IV. Origin of the obscuring cloud variability
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- Constraining black hole spin in PG 1535+547 amidst complex multi-layered absorption
- Transient LoBALs at high velocities: A Case of Extreme Broad Absorption Line Variability in J115636.82+085628.9
- Power of simultaneous X-ray and UV high-resolution spectroscopy for probing AGN outflows