High cadence, linear and circular polarization monitoring of OJ 287 - Helical magnetic field in a bent jet
I. Myserlis, S. Komossa, E. Angelakis, J. L. G\'omez, V. Karamanavis,, T. P. Krichbaum, U. Bach, D. Grupe

TL;DR
This study uses dense multi-frequency radio monitoring of blazar OJ 287 to analyze polarization behavior, revealing a helical magnetic field structure in a bent jet and linking EVPA rotations to optical flares and jet dynamics.
Contribution
It provides the first detailed multi-frequency polarization analysis of OJ 287, demonstrating a helical magnetic field and jet bending through combined radio and optical data.
Findings
Detected a large clockwise EVPA rotation of ~340° in radio data.
Constrained the helix arc length to 0.26 pc and jet bending to ≤ 7.6 pc.
Linked EVPA rotation with optical flares and jet activity.
Abstract
We present a multi-frequency, dense radio monitoring program of the blazar OJ287 using the 100m Effelsberg radio telescope. We analyze the evolution in total flux density, linear and circular polarization to study the jet structure and its magnetic field geometry. The total flux density is measured at nine bands from 2.64 GHz to 43 GHz, the linear polarization parameters between 2.64 GHz and 10.45 GHz, and the circular polarization at 4.85 GHz and 8.35 GHz. The mean cadence is 10 days. Between MJD 57370 and 57785, OJ287 showed flaring activity and complex linear and circular polarization behavior. The radio EVPA showed a large clockwise (CW) rotation by ~340 with a mean rate of -1.04 /day. Based on concurrent VLBI data, the rotation seems to originate within the jet core at 43 GHz (projected size 0.15 mas or 0.67 pc). Moreover, optical data show a similar…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Radio Astronomy Observations and Technology · Neutrino Physics Research
