English

ALMA polarimetry of radio-quiet AGNs

High Energy Astrophysical Phenomena 2025-11-12 v1 Astrophysics of Galaxies

Abstract

The compact mm emission ubiquitously found in radio-quiet active galactic nuclei (RQ AGN) exhibits properties consistent with synchrotron radiation from a small region (\leq1 light day) and undergoing self-absorption below \sim100 GHz. Several scenarios have been proposed for its origin, including an X-ray corona, a scaled-down jet, or outflow-driven shocks, which can be tested via mm polarimetry. In the optically thin regime, synchrotron emission is expected to show polarization up to \sim70\%, but disordered magnetic fields and Faraday rotation reduce this to a few percent for jets and outflows, while an X-ray corona is likely to result in complete depolarization. To investigate this, we conducted the first ALMA Band 3 full-polarization observations of three RQ AGN - NGC 3783, MCG 5-23-16, and NGC 4945. No polarized signal was detected in any of the AGN, with an upper limit of 0.5-1.5\%, supporting the X-ray corona scenario. However, we detected a compact source with 17\% polarization in NGC 3783, 20 pc away from the AGN, co-spatial with the mm and narrow-line outflow, likely linked to a shock propagating through the outflowing material. Additionally, combining our data with archival ALMA observations, we found typical mm variability in RQ AGN by a factor of 2; however, the sparsity of the data prevented a more detailed analysis of the total flux variability.

Keywords

Cite

@article{arxiv.2506.05973,
  title  = {ALMA polarimetry of radio-quiet AGNs},
  author = {E. Shablovinskaia and C. Ricci and R. Paladino and A. Laor and C-S. Chang and D. Belfiori and T. Kawamuro and E. Lopez-Rodriguez and D. J. Rosario and S. Aalto and M. Koss and R. Mushotzky and G. C. Privon},
  journal= {arXiv preprint arXiv:2506.05973},
  year   = {2025}
}

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