Optical variability of eight FRII-type quasars with 13-yr photometric light curves
arXiv:2210.04058 · doi:10.3847/1538-4365/ac9622
Abstract
We characterize the optical variability properties of eight lobe-dominated radio quasars (QSOs): B2 070937, FBQS J095206.3235245, PG 1004130, [HB89] 1156631, [HB89] 1425267, [HB89] 1503691, [HB89] 1721343, 4C 74.26, systematically monitored for a duration of 13 years since 2009. The quasars are radio-loud objects with extended radio lobes that indicate their orientation close to the sky plane. Five of the eight QSOs are classified as giant radio quasars. All quasars showed variability during our monitoring, with magnitude variations between 0.3 and 1 mag for the least variable and the most variable QSO, respectively. We performed both structure function (SF) analysis and power spectrum density (PSD) analysis for the variability characterization and search for characteristic timescales and periodicities. As a result of our analysis, we obtained relatively steep SF slopes ( ranging from 0.49 to 0.75) that are consistent with the derived PSD slopes (2--3). All the PSDs show a good fit to single power law forms, indicating a red-noise character of variability between 13 years and weeks timescales. We did not measure reliable characteristic timescales of variability from the SF analysis which indicates that the duration of the gathered data is too short to reveal them. The absence of bends in the PSDs (change of slope from 1 to 0) on longer timescales indicates that optical variations are most likely caused by thermal instabilities in the accretion disk.
Accepted for publication in ApJS; 17 pages, 5 figures, 5 tables
References in corpus (15)
- Modeling the Time Variability of SDSS Stripe 82 Quasars as a Damped Random Walk
- Correlated Multi-Waveband Variability in the Blazar 3C~279 from 1996 to 2007
- A method for the estimation of the significance of cross-correlations in unevenly sampled red-noise time series
- On the variability of quasars: a link between Eddington ratio and optical variability?
- Optical variability of AGN in the PTF/iPTF survey
- Quasar Selection Based on Photometric Variability
- The dependence of quasar variability on black hole mass
- Measuring Quasar Variability with Pan-STARRS1 and SDSS
- MAXI investigation into the longterm X-ray variability from the very-high-energy gamma-ray blazar Mrk 421
- Multiwavelength variability power spectrum analysis of the blazars 3C 279 and PKS 1510-089 on multiple timescales
- Blazar variability power spectra from radio up to TeV photon energies: Mrk 421 and PKS 2155-304
- Giant radio quasars: sample and basic properties
- A Method to Measure the Unbiased Decorrelation Timescale of the AGN Variable Signal from Structure Functions
- Optical variability power spectrum analysis of blazar sources on intranight timescales
- Stellar populations in hosts of giant radio galaxies and their neighbouring galaxies