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    Short time-scale evolution of the polarized radio jet during V404 Cygni’s 2015 outburst

    96206.pdf (2.522Mb)
    Access Status
    Open access
    Authors
    Hughes, A.K.
    Sivakoff, G.R.
    Macpherson, C.E.
    Miller-Jones, James
    Tetarenko, A.J.
    Altamirano, D.
    Anderson, Gemma
    Belloni, T.M.
    Heinz, S.
    Jonker, P.G.
    Körding, E.G.
    Maitra, D.
    Markoff, S.B.
    Migliari, S.
    Mooley, K.P.
    Rupen, M.P.
    Russell, D.M.
    Russell, T.D.
    Sarazin, C.L.
    Soria, R.
    Tudose, V.
    Date
    2023
    Type
    Journal Article
    
    Metadata
    Show full item record
    Citation
    Hughes, A.K. and Sivakoff, G.R. and Macpherson, C.E. and Miller-Jones, J.C.A. and Tetarenko, A.J. and Altamirano, D. and Anderson, G.E. et al. 2023. Short time-scale evolution of the polarized radio jet during V404 Cygni’s 2015 outburst. Monthly Notices of the Royal Astronomical Society. 521 (1): pp. 185-207.
    Source Title
    Monthly Notices of the Royal Astronomical Society
    DOI
    10.1093/mnras/stad396
    ISSN
    0035-8711
    Faculty
    Faculty of Science and Engineering
    School
    School of Elec Eng, Comp and Math Sci (EECMS)
    Funding and Sponsorship
    http://purl.org/au-research/grants/arc/DE180100346
    Remarks

    This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society © 2023 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.

    URI
    http://hdl.handle.net/20.500.11937/96442
    Collection
    • Curtin Research Publications
    Abstract

    We present a high time resolution, multifrequency linear polarization analysis of very large array (VLA) radio observations during some of the brightest radio flaring (∼1 Jy) activity of the 2015 outburst of V404 Cygni. The VLA simultaneously captured the radio evolution in two bands (each with two 1 GHz base-bands), recorded at 5/7 GHz and 21/26 GHz, allowing for a broadband polarimetric analysis. Given the source’s high flux densities, we were able to measure polarization on time-scales of ∼13 min, constituting one of the highest temporal resolution radio polarimetric studies of a black hole X-ray binary outburst to date. Across all base-bands, we detect variable, weakly linearly polarized emission (<1per cent) with a single, bright peak in the time-resolved polarization fraction, consistent with an origin in an evolving, dynamic jet component. We applied two independent polarimetric methods to extract the intrinsic electric vector position angles and rotation measures from the 5 and 7 GHz base-band data and detected a variable intrinsic polarization angle, indicative of a rapidly evolving local environment or a complex magnetic field geometry. Comparisons to the simultaneous, spatially-resolved observations taken with the Very Long Baseline Array at 15.6 GHz, do not show a significant connection between the jet ejections and the polarization state.

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