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A comparative study of radio signatures from winds and jets: Modelling synchrotron emission and polarization

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arxiv 2408.00099 v1 pith:LDPYZGGO submitted 2024-07-31 astro-ph.HE

A comparative study of radio signatures from winds and jets: Modelling synchrotron emission and polarization

classification astro-ph.HE
keywords windsjetspolarizationemissionbrightevolutionresolutionarcs
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Outflows driven by active galactic nuclei (AGN) are seen in numerous compact sources; however, it has remained unclear how to distinguish between the driving mechanisms, such as winds and jets. Therefore, our study aims to offer observational insights from simulations to aid in this distinction. Specifically, in this paper, we investigate the evolution of wide-angled, moderately relativistic, magnetized winds and analyze their non-thermal radio emission and polarization properties. We find that the evolution of winds varies depending on factors such as power, density, and opening angle, which in turn influence their observable characteristics. Additionally, different viewing angles can lead to varying observations. Furthermore, we note distinctions in the evolution of winds compared to jets, resulting in disparities in their observable features. Jets typically exhibit a thin spine and hotspot(s). Winds manifest broader spines or an "hourglass-shaped" bright emission in the cocoon, which are capped by bright arcs. Both display high polarization coinciding with the bright spine and hotspots/arcs, although these regions are relatively compact and localized in jets when compared to winds. We emphasize the importance of high resolution, as we demonstrate that emission features from both jets and winds can become indistinguishable at lower resolutions. The distribution of polarization is largely unaffected by resolution, though lower polarization becomes more noticeable when the resolution is decreased.

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Cited by 2 Pith papers

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  1. Simulating realistic radio morphologies of Fanaroff-Riley I jets in a self-regulating cool-core cluster

    astro-ph.GA 2026-06 unverdicted novelty 7.0

    Self-regulating AGN jets in MHD simulations of cool-core clusters yield realistic FRI radio morphologies viewed along the jet axis and account for frequency-independent lobe extents via 1-50 μG fields allowing both yo...

  2. Non-thermal emission in jets and winds: Expected emission and spectral index distributions

    astro-ph.HE 2026-07 conditional novelty 6.0

    Self-consistent CRE evolution in RMHD simulations produces distinct spectral-index gradients that distinguish compact AGN jets from winds even when morphology is ambiguous.