The abundance, distribution, and physical nature of highly ionized oxygen OVI, OVII, and OVIII in IllustrisTNG
Dylan Nelson, Guinevere Kauffmann, Annalisa Pillepich, Shy Genel,, Volker Springel, Ruediger Pakmor, Lars Hernquist, Rainer Weinberger, Paul, Torrey, Mark Vogelsberger, Federico Marinacci

TL;DR
This study uses large cosmological simulations to analyze the distribution, physical properties, and evolution of highly ionized oxygen in the circumgalactic and intergalactic media, aligning well with observational data.
Contribution
It provides a comprehensive analysis of oxygen ions in the CGM and IGM using the IllustrisTNG simulations, including their distribution, physical state, and relation to galaxy properties, with new insights into feedback effects.
Findings
Good agreement with observed OVI column density distribution functions.
Correlation between galaxy color and OVI content in the CGM.
Blackhole feedback influences the physical state of the CGM and galaxy quenching.
Abstract
We explore the abundance, spatial distribution, and physical properties of the OVI, OVII, and OVIII ions of oxygen in circumgalactic and intergalactic media (the CGM, IGM, and WHIM). We use the TNG100 and TNG300 large volume cosmological magneto-hydrodynamical simulations. Modeling the ionization states of simulated oxygen, we find good agreement with observations of the low-redshift OVI column density distribution function (CDDF), and present its evolution for all three ions from z=0 to z=4. Producing mock quasar absorption line spectral surveys, we show that the IllustrisTNG simulations are fully consistent with constraints on the OVI content of the CGM from COS-Halos and other low redshift observations, producing columns as high as observed. We measure the total amount of mass and average column densities of each ion using hundreds of thousands of simulated galaxies spanning 10^11 <…
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