The Extreme Ultraviolet Variability of Quasars
arXiv:1608.02302 · doi:10.3847/0004-637X/830/2/104
Abstract
We study the extreme ultraviolet (EUV) variability (rest frame wavelengths 500 - 920 ) of high luminosity quasars using HST (low to intermediate redshift sample) and SDSS (high redshift sample) archives. The combined HST and SDSS data indicates a much more pronounced variability when the sampling time between observations in the quasar rest frame is sec compared to sec. Based on an excess variance analysis, for time intervals sec in the quasar rest frame, of the quasars (4/40) show evidence of EUV variability. Similarly, for time intervals sec in the quasar rest frame, of the quasars (21/38) show evidence of EUV variability. The propensity for variability does not show any statistically significant change between sec and sec (1 yr). The temporal behavior is one of a threshold time interval for significant variability as opposed to a gradual increase on these time scales. A threshold time scale can indicate a characteristic spatial dimension of the EUV region. We explore this concept in the context of the slim disk models of accretion. We find that for rapidly spinning black holes, the radial infall time to the plunge region of the optically thin surface layer of the slim disk that is responsible for the preponderance of the EUV flux emission (primarily within 0 - 7 black hole radii from the inner edge of the disk) is consistent with the empirically determined variability time scale.
To appear in ApJ
References in corpus (6)
- HST-COS Observations of AGN. II. Extended Survey of Ultraviolet Composite Spectra from 159 Active Galactic Nuclei
- Outflows and the Physical Properties of Quasars
- A compact, metal-rich, kpc-scale outflow in FBQS J0209-0438: Detailed diagnostics from HST/COS extreme UV observations
- Magnetic flux stabilizing thin accretion disks
- Evidence of the Dynamics of Relativistic Jet Launching in Quasars
- The Extreme Ultraviolet Deficit and Magnetically Arrested Accretion in Radio Loud Quasars
Cited by in corpus (7)
- What does Civλ1549 tell us about the physical driver of the Eigenvector Quasar Sequence?
- Directly tracing cool filamentary accretion over >100 kpc into the interstellar medium of a quasar host at z=1
- uGMRT detection of associated HI 21 cm absorption at
- Powerful Radio Sources in the Southern Sky. I. Optical Identifications
- The Highly Self-Absorbed Blazar, PKS\,1351018
- The Energetics of Launching the Most Powerful Jets in Quasars: A Study of 3C82
- The Kinetically Dominated Quasar 3C~418