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    AN HST PROPER-MOTION STUDY OF THE LARGE-SCALE JET OF 3C273

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    https://iopscience.iop.org/article/10.3847/0004-637X/818/2/195
    Permanent Link
    10.3847/0004-637x/818/2/195
    http://hdl.handle.net/11603/19492
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    • UMBC Faculty Collection
    • UMBC Joint Center for Earth Systems Technology (JCET)
    • UMBC Physics Department
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    Author/Creator
    Meyer, Eileen T.
    Sparks, William B.
    Georganopoulos, Markos
    Anderson, Jay
    Marel, Roeland van der
    Biretta, John
    Sohn, Sangmo Tony
    Chiaberge, Marco
    Perlman, Eric
    Norman, Colin
    Date
    2016-02-18
    Type of Work
    13 pages
    Text
    journal articles preprints
    Citation of Original Publication
    Eileen T. Meyer et al., AN HST PROPER-MOTION STUDY OF THE LARGE-SCALE JET OF 3C273, The Astrophysical Journal, Volume 818, Number 2, doi: 10.3847/0004-637x/818/2/195
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    This item is likely protected under Title 17 of the U.S. Copyright Law. Unless on a Creative Commons license, for uses protected by Copyright Law, contact the copyright holder or the author.
    © 2016. The American Astronomical Society. All rights reserved.
    Abstract
    The radio galaxy 3C 273 hosts one of the nearest and best-studied powerful quasar jets. Having been imaged repeatedly by the Hubble Space Telescope (HST) over the past twenty years, it was chosen for an HST program to measure proper motions in the kiloparsec-scale resolved jets of nearby radio-loud active galaxies. The jet in 3C 273 is highly relativistic on sub-parsec scales, with apparent proper motions up to 15c observed by very long baseline interferometry. In contrast, we find that the kiloparsec-scale knots are compatible with being stationary, with a mean speed of −0.2 ± 0.5c over the whole jet. Assuming the knots are packets of moving plasma, an upper limit of 1c implies a bulk Lorentz factor Γ < 2.9. This suggests that the jet has either decelerated significantly by the time it reaches the kiloparsec scale, or that the knots in the jet are standing shock features. The second scenario is incompatible with the inverse Compton off the Cosmic Microwave Background (IC/CMB) model for the X-ray emission of these knots, which requires the knots to be in motion, but IC/CMB is also disfavored in the first scenario due to energetic considerations, in agreement with the recent finding of Meyer & Georganopoulos which ruled out the IC/CMB model for the X-ray emission of 3C 273 via gamma-ray upper limits.


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    Albin O. Kuhn Library & Gallery
    University of Maryland, Baltimore County
    1000 Hilltop Circle
    Baltimore, MD 21250
    www.umbc.edu/scholarworks

    Contact information:
    Email: scholarworks-group@umbc.edu
    Phone: 410-455-3021


    If you wish to submit a copyright complaint or withdrawal request, please email mdsoar-help@umd.edu.