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Quasars Probing Galaxies. I. Signatures of Gas Accretion at Redshift z ≈ 0.2

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posted on 2024-07-26, 14:32 authored by Stephanie H. Ho, Crystal L. Martin, Glenn KacprzakGlenn Kacprzak, Christopher W. Churchill
We describe the kinematics of circumgalactic gas near the galactic plane, combining new measurements of galaxy rotation curves and spectroscopy of background quasars. The sightlines pass within 19-93 kpc of the target galaxy and generally detect Mg ii absorption. The Mg ii Doppler shifts have the same sign as the galactic rotation, so the cold gas co-rotates with the galaxy. Because the absorption spans a broader velocity range than disk rotation can explain, we explore simple models for the circumgalactic kinematics. Gas spiraling inwards (near the disk plane) offers a successful description of the observations. An appendix describes the addition of tangential and radial gas flows and illustrates how the sign of the disk inclination produces testable differences in the projected line-of-sight velocity range. This inflow interpretation implies that cold flow disks remain common down to redshift z ≈ 0.2 and prolong star formation by supplying gas to the disk.

Funding

Simulating galaxy ecosystems

Australian Research Council

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ISSN

1538-4357

Journal title

Astrophysical Journal

Volume

835

Issue

2

Article number

article no. 267

Pagination

1 p

Publisher

Institute of Physics Publishing, Inc.

Copyright statement

Copyright © 2017. The American Astronomical Society. All rights reserved. The published version is reproduced here in accordance with the copyright policy of the publisher and can be also be located at https://doi.org/10.3847/1538-4357/835/2/267.

Language

eng

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