Studying the WHIM Content of the Galaxy Large-Scale Structures along the Line of Sight to H 2356-309
L. Zappacosta, F. Nicastro, R. Maiolino, G. Tagliaferri, D.A. Buote,, T. Fang, P.J. Humphrey, F. Gastaldello

TL;DR
This study uses high-resolution X-ray spectra to search for warm-hot intergalactic medium in large-scale structures along a specific sightline, constraining physical properties and estimating the baryon density.
Contribution
It provides the first constraints on the physical conditions and mass density of the WHIM in two large-scale structures using deep Chandra observations.
Findings
Detected a warm phase at z=0.062 with specific temperature and column density.
Estimated the WHIM contribution to the cosmic baryon budget.
Constrained the physical parameters of the WHIM in the observed structures.
Abstract
We make use of a 500ks Chandra HRC-S/LETG spectrum of the blazar H2356-309, combined with a lower S/N spectrum of the same target, to search for the presence of warm-hot absorbing gas associated with two Large-Scale Structures (LSSs) crossed by this sightline at z=0.062 (the Pisces-Cetus Supercluster, PCS) and at z=0.128 ("Farther Sculptor Wall", FSW). No statistically significant (>=3sigma) individual absorption is detected from any of the strong He- or H-like transitions of C, O and Ne at the redshifts of the structures. However we are still able to constrain the physical and geometrical parameters of the associated putative absorbing gas, by performing joint spectral fit of marginal detections and upper limits of the strongest expected lines with our self-consistent hybrid ionization WHIM spectral model. At the redshift of the PCS we identify a warm phase with logT=5.35_-0.13^+0.07 K…
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