Exploring Short-Term Optical Variability of Blazars Using
arXiv:2210.14752 · doi:10.1093/mnras/stac3125
Abstract
We present a first systematic time series study of a sample of blazars observed by the Transiting Exoplanet Survey Satellite spacecraft. By cross matching the positions of the sources in the TESS observations with those from Roma-BZCAT, 29 blazars including both BL Lacerate objects and flat-spectrum radio quasars were identified. The observation lengths of the 79 light curves of the sources, across all sectors on which the targets of interest have been observed by , range between 21.25 and 28.2 days. The light curves were analyzed using various methods of time series analysis. The results show that the sources exhibit significant variability with fractional variability spanning between 1.41% and 53.84%. The blazar flux distributions were studied by applying normal and lognormal probability density function models. The results indicate that optical flux histogram of the sources are consistent with normal probability density function with most of them following bi-modal distribution as opposed to uni-modal distribution. This suggests that the days-timescale optical variability is contributed either by two different emission zones or two distinct states of short-term activity in blazars. Power spectral density analysis was performed by using the power spectral response method and the true power spectra of unevenly sampled light curves were estimated. The power spectral slopes of the light curves ranged from 1.7 to 3.2.
Accepted to MNRAS
References in corpus (12)
- The Transiting Exoplanet Survey Satellite
- astroquery: An Astronomical Web-Querying Package in Python
- Fast TeV variability in blazars: jets in a jet
- Roma-BZCAT: A multifrequency catalogue of Blazars
- Correlated Multi-Waveband Variability in the Blazar 3C~279 from 1996 to 2007
- Time-correlation between the radio and gamma-ray activity in blazars and the production site of the gamma-ray emission
- Stochastic Modeling of the Fermi/LAT Gamma-ray Blazar Variability
- Multifrequency Photo-polarimetric WEBT Observation Campaign on the Blazar S5 0716+714: Source Microvariability and Search for Characteristic Timescales
- Multiwavelength Variability Signatures of Relativistic Shocks in Blazar Jets
- The dual nature of blazar fast variability. Space and ground observations of S5 0716+714
- Blazar Variability From Turbulence in Jets Launched by Magnetically Arrested Accretion Flows
- X-ray timing and spectral variability properties of blazars S5 0716+714, OJ 287, Mrk 501, and RBS 2070