Gaussian Process Modeling Blazar Multiwavelength Variability: Indirectly Resolving Jet Structure
arXiv:2301.01025 · doi:10.3847/1538-4357/acafe5
Abstract
Blazar jet structure can be indirectly resolved by analyzing the multiwavelength variability. In this work, we analyze the long-term variability of blazars in radio, optical and X-ray energies with the Gaussian process (GP) method. The multiwavelength variability can be successfully characterized by the damped-random walk (DRW) model. The nonthermal optical characteristic timescales of 38 blazars are statistically consistent with the -ray characteristic timescales of 22 blazars. For three individuals (3C 273, PKS 1510-089, and BL Lac), the nonthermal optical, X-ray, and -ray characteristic timescales are also consistent within the measured 95 errors, but the radio timescale of 3C 273 is too large to be constrained by the decade-long light curve. The synchrotron and inverse-Compton emissions have the same power spectral density, suggesting that the long-term jet variability is irrelevant to the emission mechanism. In the plot of the rest-frame timescale versus black hole mass, the optical--ray timescales of the jet variability occupy almost the same space with the timescales of accretion disk emission from normal quasars, which may imply that the long-term variabilities of the jet and accretion disk are driven by the same physical process. It is suggested that the nonthermal optical-X-ray and -ray emissions are produced in the same region, while the radio core which can be resolved by very-long-baseline interferometry locates at a far more distant region from the black hole. Our study suggests a new methodology for comparing thermal and nonthermal emissions, which is achieved by using the standard GP method.
Accepted by ApJ; 18 pages
References in corpus (24)
- Array Programming with NumPy
- The power of relativistic jets is larger than the luminosity of their accretion disks
- Is Quasar Optical Variability a Damped Random Walk?
- A characteristic optical variability timescale in astrophysical accretion disks
- Time-correlation between the radio and gamma-ray activity in blazars and the production site of the gamma-ray emission
- Improving Damped Random Walk parameters for SDSS Stripe 82 Quasars with Pan-STARRS1
- General Physical Properties of CGRaBS Blazars
- Optical Variability of Quasars with 20-Year Photometric Light Curves
- Examining AGN UV/optical Variability Beyond the Simple Damped Random Walk
- Resolving the inner parsec of the blazar J1924-2914 with the Event Horizon Telescope
- Looking at Blazar Light Curve Periodicities with Gaussian Processes
- Gaussian Process Modeling -LAT -ray Blazar Variability: A Sample of Blazars with -ray Quasi-periodicities
- Supermassive black holes with high accretion rates in active galactic nuclei: X. Optical variability characteristics
- Basic properties of Fermi blazars and the "blazar sequence"
- A Quasi-periodic Oscillation in the gamma-ray Emission from the Non-blazar Active Galactic Nucleus PKS 0521-36
- Broad line region and black hole mass of PKS 1510-089 from spectroscopic reverberation mapping
- Multiwavelength variability power spectrum analysis of the blazars 3C 279 and PKS 1510-089 on multiple timescales
- Curvature of the spectral energy distribution, the dominant process for inverse Compton component and other jet properties in Fermi 2LAC blazars
- Multiwavelength Study of the Quiescent States of Six Brightest Flat Spectrum Radio Quasars detected by Fermi-LAT
- Correlation between optical flux and polarization variations in Flat Spectrum Radio Quasars on diverse timescales
- Modeling the Spectral Energy Distributions and Spectropolarimetry of Blazars -- Application to 4C+01.02 in 2016-2017
- Detecting the periodicity of highly irregularly sampled light-curves with Gaussian processes: the case of SDSSJ025214.67-002813.7
- Simulations of Stochastic Long-Term Variability in Leptonic Models for External-Compton and Synchrotron Self-Compton Dominated Blazars
- Search for periodicities in High Energy AGNs with a time-domain approach
Cited by in corpus (4)
- Discovering the Mass-Scaled Damping Timescale from Microquasars to Blazars
- Probing the disc-jet coupling in S4 0954+65, PKS 0903-57, & 4C +01.02 with -rays
- Polarization Studies in Different Blazar Types. Part I: Correlation between Optical Brightness and Polarization Degree
- Scalable and Robust Multiband Modeling of AGN Light Curves in Rubin-LSST