Parsec-scale evolution of the gigahertz-peaked spectrum quasar PKS 0858-279
arXiv:2401.03603 · doi:10.1093/mnras/stae084
Abstract
We conducted multi-epoch, multi-frequency parsec-scale studies on the gigahertz-peaked spectrum quasar PKS 0858-279 with the Very Long Baseline Array (VLBA). Our observations on 2005-11-26 elucidated a weak core, characterized by an inverted spectrum, and a distinctly bent jet that exhibited a notable bright feature in its Stokes I emission. Through comprehensive analysis of polarization and spectral data, we inferred the formation of a shock wave within this feature, stemming from interactions with a dense cloud in the ambient medium. In this paper, VLBI-Gaia astrometry further reinforces the core identification. With a deep analysis of six additional VLBA epochs spanning from 2007 to 2018, we observed that while the quasar's parsec-scale structure remained largely consistent, there were discernible flux density changes. These variations strongly imply the recurrent ejection of plasma into the jet. Complementing our VLBA data, RATAN-600 observations of the integrated spectra suggested an interaction between standing and travelling shock waves in 2005. Moreover, our multi-epoch polarization analysis revealed a drastic drop in rotation measure values from 6000 rad/m^2 to 1000 rad/m^2 within a single year, attributable to diminishing magnetic fields and particle density in an external cloud. This change is likely instigated by a shock in the cloud, triggered by the cloud's interaction with the jet, subsequently prompting its expansion. Notably, we also observed a significant change in the magnetic field direction of the jet, from being perpendicular post its observed bend to being perpendicular prior to the bend - an alteration possibly induced by the dynamics of shock waves.
14 pages, 10 figures, accepted for publication in MNRAS
References in corpus (15)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- MOJAVE: XV. VLBA 15 GHz Total Intensity and Polarization Maps of 437 Parsec-Scale AGN Jets From 1996-2017
- MOJAVE: Monitoring of Jets in Active Galactic Nuclei with VLBA Experiments. VIII. Faraday rotation in parsec-scale AGN jets
- Compact steep-spectrum and peaked-spectrum radio sources
- Opacity in compact extragalactic radio sources and its effect on astrophysical and astrometric studies
- On the Evolution of and High-Energy Emission from GHz-Peaked-Spectrum Sources
- MOJAVE: XVIII. Kinematics and Inner Jet Evolution of Bright Radio-Loud Active Galaxies
- VLBI-Gaia offsets favor parsec-scale jet direction in Active Galactic Nuclei
- MOJAVE XIX: Brightness Temperatures and Intrinsic Properties of Blazar Jets
- Anatomy of helical relativistic jets: The case of S5 0836+710
- On significance of VLBI/Gaia position offsets
- Filamentary structures as the origin of blazar jet radio variability
- Taking snapshots of the jet-ISM interplay: The case of PKS0023-26
- Tracing Milky Way scattering by compact extragalactic radio sources