A ring accelerator? Unusual jet dynamics in the IceCube candidate PKS 1502+106
arXiv:2103.00292 · doi:10.1093/mnras/stab589
Abstract
On 2019/07/30.86853 UT, IceCube detected a high-energy astrophysical neutrino candidate. The Flat Spectrum Radio Quasar PKS 1502+106 is located within the 50 percent uncertainty region of the event. Our analysis of 15 GHz Very Long Baseline Array (VLBA) and astrometric 8 GHz VLBA data, in a time span prior and after the IceCube event, reveals evidence for a radio ring structure which develops with time. Several arc-structures evolve perpendicular to the jet ridge line. We find evidence for precession of a curved jet based on kinematic modelling and a periodicity analysis. An outflowing broad line region (BLR) based on the C IV line emission (Sloan Digital Sky Survey, SDSS) is found. We attribute the atypical ring to an interaction of the precessing jet with the outflowing material. We discuss our findings in the context of a spine-sheath scenario where the ring reveals the sheath and its interaction with the surroundings (narrow line region, NLR, clouds). We find that the radio emission is correlated with the -ray emission, with radio lagging the -rays. Based on the -ray variability timescale, we constrain the -ray emission zone to the BLR (30-200 ) and within the jet launching region. We discuss that the outflowing BLR provides the external radiation field for -ray production via external Compton scattering. The neutrino is most likely produced by proton-proton interaction in the blazar zone (beyond the BLR), enabled by episodic encounters of the jet with dense clouds, i.e. some molecular cloud in the NLR.
35 pages, 33 figures, 3 tables; accepted by the MNRAS Main Journal
References in corpus (18)
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- The Sloan Digital Sky Survey Quasar Catalog: twelfth data release
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Nonlinear time-series analysis revisited
- Historical Review of Recurrence Plots
- Time-correlation between the radio and gamma-ray activity in blazars and the production site of the gamma-ray emission
- IC5063: AGN driven outflow of warm and cold gas
- Astrophysical Sources of High Energy Neutrinos in the IceCube Era
- Determination of chaotic behaviour in time series generated by charged particle motion around magnetized Schwarzschild black holes
- Through The Ring Of Fire: -Ray Variability In Blazars By A Moving Plasmoid Passing A Local Source Of Seed Photons
- Particle Acceleration in Mildly Relativistic Shearing Flows: the Interplay of Systematic and Stochastic Effects, and the Origin of the Extended High-energy Emission in AGN Jets
- rHARM: Accretion and Ejection in Resistive GR-MHD
- Polarization Signatures of Kink Instabilities in the Blazar Emission Region from Relativistic Magnetohydrodynamic Simulations
- Apparent superluminal core expansion and limb brightening in the candidate neutrino blazar TXS 0506+056
- Linear Polarization Properties of Parsec-Scale AGN~Jets
- Curvature induced polarization and spectral index behavior for PKS 1502+106
- A two-component jet model based on the Blandford-Znajek and Blandford-Payne processes
- Deterministic Aspect of the -ray Variability in Blazars
Cited by in corpus (6)
- Precession-induced Variability in AGN Jets and OJ 287
- Search for directional associations between Baikal Gigaton Volume Detector neutrino-induced cascades and high-energy astrophysical sources
- -LAT realtime follow-ups of high-energy neutrino alerts
- The physics of the MHD disk-jet transition in binary systems: jetted spiral walls launched from disk spiral arms
- Signatures of a spinning supermassive black hole binary on the mas-scale jet of the quasar S5 1928+738 based on 25 years of VLBI data
- Non-thermal emission from fall-back clouds in the Broad-Line Region of Active Galactic Nuclei