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    The case for strangulation in low-mass hosts: DDO 113

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    Author
    Garling, Christopher T
    Peter, Annika H G
    Kochanek, Christopher S
    Sand, David J
    Crnojević, Denija
    Affiliation
    Univ Arizona, Dept Astron
    Univ Arizona, Steward Observ
    Issue Date
    2019-12-24
    Keywords
    galaxies: dwarf
    galaxies: evolution
    
    Metadata
    Show full item record
    Publisher
    OXFORD UNIV PRESS
    Citation
    Christopher T Garling, Annika H G Peter, Christopher S Kochanek, David J Sand, Denija Crnojević, The case for strangulation in low-mass hosts: DDO 113, Monthly Notices of the Royal Astronomical Society, Volume 492, Issue 2, February 2020, Pages 1713–1730, https://doi.org/10.1093/mnras/stz3526
    Journal
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
    Rights
    Copyright © 2019 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society This article is published and distributed under the terms of the Oxford University Press, Standard Journals Publication Model (https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model)
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    We investigate the case for environmental quenching of the Fornax-mass satellite DDO 113, which lies only 9 kpc in projection from its host, the Large-Magellanic-Cloud-mass galaxy NGC 4214. DDO 113 was quenched about 1 Gyr ago and is virtually gas-free, while analogs in the field are predominantly star-forming and gas-rich. We use deep imaging obtained with the Large Binocular Telescope to show that DDO 113 exhibits no evidence of tidal disruption to a surface brightness of μV ∼ 29 mag arcsec−2, based on both unresolved emission and resolved stars. Mass-analogs of DDO 113 in Illustris-1 with similar hosts, small projected separations, and no significant tidal stripping first fell into their host halo 2–6 Gyr ago, showing that tidal features (or lack thereof) can be used to constrain infall times in systems where there are few other constraints on the orbit of the satellite. With the infall time setting the clock for environmental quenching mechanisms, we investigate the plausibility of several such mechanisms. We find that strangulation, the cessation of cold gas inflows, is likely the dominant quenching mechanism for DDO 113, requiring a time-averaged mass-loading factor of η = 6–11 for star-formation-driven outflows that is consistent with theoretical and observational constraints. Motivated by recent numerical work, we connect DDO 113’s strangulation to the presence of a cool circumgalactic medium (CGM) around NGC 4214. This discovery shows that the CGM of low-mass galaxies can affect their satellites significantly and motivates further work on understanding the baryon cycle in low-mass galaxies.
    ISSN
    0035-8711
    DOI
    10.1093/mnras/stz3526
    Version
    Final published version
    ae974a485f413a2113503eed53cd6c53
    10.1093/mnras/stz3526
    Scopus Count
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    UA Faculty Publications

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