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김재영

Kim, Jae-Young
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Filamentary structures as the origin of blazar jet radio variability

Author(s)
Fuentes, AntonioGomez, Jose L.Marti, Jose M.Perucho, ManelZhao, Guang-YaoLico, RoccoLobanov, Andrei P.Bruni, GabrieleKovalev, Yuri Y.Chael, AndrewAkiyama, KazunoriBouman, Katherine L.Sun, HeCho, IljeTraianou, EfthaliaToscano, TeresaDahale, RohanFoschi, MariannaGurvits, Leonid I.Jorstad, SvetlanaKim, Jae-YoungMarscher, Alan P.Mizuno, YosukeRos, EduardoSavolainen, Tuomas
Issued Date
2023-11
DOI
10.1038/s41550-023-02105-7
URI
https://scholarworks.unist.ac.kr/handle/201301/83736
Citation
NATURE ASTRONOMY, v.7, no.11, pp.1359 - 1367
Abstract
Supermassive black holes at the centre of active galactic nuclei power some of the most luminous objects in the Universe. Typically, very-long-baseline interferometric observations of blazars have revealed only funnel-like morphologies with little information on the internal structure of the ejected plasma or have lacked the dynamic range to reconstruct the extended jet emission. Here we present microarcsecond-scale angular resolution images of the blazar 3C 279 obtained at 22 GHz with the space very-long-baseline interferometry mission RadioAstron, which allowed us to resolve the jet transversely and reveal several filaments produced by plasma instabilities in a kinetically dominated flow. The polarimetric properties derived from our high-angular-resolution and broad-dynamic-range images are consistent with the presence of a helical magnetic field threaded to the jet. We infer a clockwise rotation as seen in the direction of flow motion with an intrinsic helix pitch angle of similar to 45 degrees and a Lorentz factor of similar to 13 at the time of observation. We also propose a model to explain blazar jet radio variability in which emission features travelling down the jet may manifest as a result of differential Doppler boosting within the filaments, as opposed to the standard shock-in-jet model. Characterizing such variability is particularly important given the relevance of blazar physics from cosmic particle acceleration to standard candles in cosmology.
Publisher
NATURE PORTFOLIO
ISSN
2397-3366
Keyword
SIZEACTIVE GALACTIC NUCLEIMAGNETIC-FIELDS

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