QSO Absorption Systems Detected in Ne VIII: High-Metallicity Clouds with a Large Effective Cross Section
Joseph D. Meiring, Todd M. Tripp, Jessica K. Werk, J. Christopher, Howk, Edward B. Jenkins, J. Xavier Prochaska, Nicholas Lehner, and Kenneth R., Sembach

TL;DR
This study analyzes NeVIII absorption systems in quasar spectra, revealing high-metallicity, multiphase clouds with large cross sections that likely contribute significantly to the baryon and metal content in galaxy halos.
Contribution
It presents the first detailed characterization of NeVIII absorbers as multiphase, high-metallicity clouds with large effective cross sections, expanding understanding of circumgalactic media.
Findings
NeVIII absorbers are multiphase with hot and cool gas components.
Cool phases have low densities and small sizes, likely to dissipate.
Large effective cross section (>100 kpc) implies many such clouds per galaxy.
Abstract
Using high resolution, high signal-to-noise ultraviolet spectra of the z = 0.9754 quasar PG1148+549 obtained with the Cosmic Origins Spectrograph (COS) on the Hubble Space Telescope, we study the physical conditions and abundances of NeVIII+OVI absorption line systems at z(abs) =0.68381, 0.70152, 0.72478. In addition to NeVIII and OVI, absorption lines from multiple ionization stages of oxygen (OII, OIII, OIV) are detected and are well-aligned with the more highly ionized species. We show that these absorbers are multiphase systems including hot gas (T ~ 10^{5.7} K) that produces NeVIII and OVI, and the gas metallicity of the cool phase ranges from Z = 0.3 Z_{solar} to supersolar. The cool (~10^{4} K) phases have densities n_{H} ~ 10^{-4} cm^{-3} and small sizes (< 4kpc); these cool clouds are likely to expand and dissipate, and the NeVIII may be within a transition layer between the…
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