A wiggling filamentary jet at the origin of the blazar multi-wavelength behaviour
arXiv:2410.22319 · doi:10.1051/0004-6361/202452311
Abstract
Blazars are beamed active galactic nuclei known for their strong multi-wavelength variability on timescales from years down to minutes. We aim to investigate the suitability of the twisting jet model presented in previous works to explain the multi-wavelength behaviour of BL Lacertae, the prototype of one of the blazar classes. According to this model, the jet is inhomogeneous, curved, and twisting, and the long-term variability is due to changes in the Doppler factor due to variations in the orientation of the jet-emitting regions. We analysed optical data of the source obtained during monitoring campaigns organised by the Whole Earth Blazar Telescope (WEBT) in 2019-2022, together with radio data from the WEBT and other teams, and gamma-ray data from the Fermi satellite. In this period, BL Lacertae underwent an extraordinary activity phase, reaching its historical optical and gamma-ray brightness maxima. The application of the twisting jet model to the source light curves allows us to infer the wiggling motion of the optical, radio, and gamma-ray jet-emitting regions. The optical-radio correlation shows that the changes in the radio viewing angle follow those in the optical viewing angle by about 120 days, and it suggests that the jet is composed of plasma filaments, which is in agreement with some radio high-resolution observations of other sources. The gamma-ray emitting region is found to be co-spatial with the optical one, and the analysis of the gamma-optical correlation is consistent with both the geometric interpretation and a synchrotron self-Compton (SSC) origin of the high-energy photons. We propose a geometric scenario where the jet is made up of a pair of emitting plasma filaments in a sort of double-helix curved rotating structure, whose wiggling motion produces changes in the Doppler beaming and can thus explain the observed multi-wavelength long-term variability.
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References in corpus (26)
- Doppler factors, Lorentz factors and viewing angles for quasars, BL Lacertae objects and radio galaxies
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- MOJAVE: XV. VLBA 15 GHz Total Intensity and Polarization Maps of 437 Parsec-Scale AGN Jets From 1996-2017
- Kinematics of the jet in M87 on scales of 100 -- 1000 Schwarzschild radii
- Implications of very rapid TeV variability in blazars
- MOJAVE: XVIII. Kinematics and Inner Jet Evolution of Bright Radio-Loud Active Galaxies
- MOJAVE XIX: Brightness Temperatures and Intrinsic Properties of Blazar Jets
- Kink instabilities in jets from rotating magnetic fields
- Anatomy of helical relativistic jets: The case of S5 0836+710
- Structure and flux variability in the VLBI jet of BL Lacertae during the WEBT campaigns (1995--2004)
- Kink-driven magnetic reconnection in relativistic jets: consequences for X-ray polarimetry of BL Lacs
- The dual nature of blazar fast variability. Space and ground observations of S5 0716+714
- Filamentary structures as the origin of blazar jet radio variability
- Resolving the inner parsec of the blazar J1924-2914 with the Event Horizon Telescope
- Studies of the Jet in BL Lacertae. II. Superluminal Alfvén Waves
- Properties of the jet in M87 revealed by its helical structure imaged with the VLBA at 8 and 15 GHz
- Linear stability analysis of magnetized relativistic rotating jets
- The complex variability of blazars: Time-scales and periodicity analysis in S4 0954+65
- MOJAVE. XX. Persistent Linear Polarization Structure in Parsec-scale AGN Jets
- A unified model for orphan and multi-wavelength blazar flares
- Plasmoid statistics in relativistic magnetic reconnection
- Unravelling the Innermost Jet Structure of OJ 287 with the First GMVA+ALMA Observations
- Optical/-ray blazar flare correlations: understanding the high-energy emission process using ASAS-SN and Fermi light curves
- The optical behaviour of BL Lacertae at its maximum brightness levels: a blend of geometry and energetics
- A fully-kinetic model for orphan gamma-ray flares in blazars
- A flat-spectrum flare in S4 0444+63 revealed by a new implementation of multi-wavelength single-dish observations
Cited by in corpus (5)
- The variability of blazars throughout the electromagnetic spectrum
- Transient QPOs of Fermi-LAT blazars under the Curved Jet Model
- Multiband optical variability on diverse timescales of the blazar Ton 599 from 2011 to 2023
- Twenty years of blazar monitoring with the INAF radio telescopes
- Distributed accelerators in the jet of Centaurus A: the origin of the spectral hardening of very high energy gamma-rays