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Where is the Super-virial Gas? II: Insight from the Survey of Galactic Sightlines

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arxiv 2411.15394 v2 pith:PY2BBMD2 submitted 2024-11-23 astro-ph.GA astro-ph.HE

classification astro-ph.GAastro-ph.HE
keywords alphacomponentdetectedgalacticlinessightlinessuper-virialabsorption
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Recent observations have revealed a super-virial temperature gas phase at log(T/K) $\sim7$ in the Milky Way, challenging existing galaxy-formation models. This hot gas phase was discovered toward extragalactic absorption sightlines and blank-sky emission fields, both at high galactic latitudes. The location of this hot component is unknown; is it in the extended circumgalactic medium (CGM) or in the interstellar medium (ISM) instead? We analyzed X-ray spectra from Chandra's High-Energy Transmission Grating (HETG) observations of 27 Galactic X-ray binaries (XRBs) to investigate whether the hot gas component is present in the ISM. We searched for absorption lines of SXVI K$\alpha$, SiXIV K$\alpha$, and NeX K$\alpha$, which are the tell-tale signatures of the hot gas and which have been detected toward extragalactic sightlines. Of the 27 targets, these lines were detected in the spectra of only 7, with two sources displaying broad line features likely intrinsic to the XRB systems. Additionally, most of the detected lines are time-variable, reinforcing their likely association with the XRBs. Our results suggest that the super-virial temperature gas is not a widespread component of the ISM but may instead be located in extraplanar regions or the extended CGM, in line with some recent simulation results.

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Cited by 1 Pith paper

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  1. Where is the Supervirial Gas? III. Insights from X-ray Shadow Observations and a revised Model for the Soft Diffuse X-ray Background

    astro-ph.GA 2025-07 conditional novelty 5.0 of 10

    X-ray shadows show the excess N VII and super-virial hot emission in the soft diffuse X-ray background lie beyond the local clouds, in a nitrogen-rich (N/O 2.6±0.5 solar) circumgalactic medium.

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