The Properties of Two Low Redshift O VI Absorbers and Their Associated Galaxies Toward 3C 263
B. Savage, T.-S. Kim, B. Keeney, A. Narayanan, J. Stocke, B. Wakker

TL;DR
This study investigates two low-redshift O VI absorbers and their associated galaxies, revealing complex multi-phase gas properties and possible links to galaxy environments and circumgalactic medium.
Contribution
It provides detailed analysis of the physical conditions and origins of O VI absorbers and their galaxy counterparts at low redshift, combining ultraviolet spectroscopy with galaxy observations.
Findings
One absorber is linked to a spiral galaxy at 63 kpc with multi-phase gas.
The other absorber is associated with a more distant galaxy at 617 kpc or possibly filament gas.
Both absorbers show evidence of warm, enriched gas possibly related to galaxy feedback or large-scale structures.
Abstract
Ultraviolet observations of the QSO 3C 263 (zem = 0.652) with COS and FUSE reveal O VI absorption systems at z = 0.06342 and 0.14072 . WIYN multi-object spectrograph observations provide information about the galaxies associated with the absorbers. The multi-phase system at z = 0.06342 traces cool photoionized gas and warm collisionally ionized gas associated with a L ~ 0.31L* compact spiral emission line galaxy with an impact parameter of 63 kpc. The cool photoionized gas in the absorber is well modeled with log U ~ -2.6, log N(H) ~17.8, log n(H) ~ -3.3 and [Si/H] = -0.14\pm0.23. The collisionally ionized gas containing C IV and O VI probably arises in cooling shock heated transition temperature gas with log T ~ 5.5. The absorber is likely tracing circumgalactic gas enriched by gas ejected from the spiral emission line galaxy. The simple system at z = 0.14072 only contains O VI and…
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