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Ultraviolet Line Emission from Metals in the Low-Redshift Intergalactic Medium

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arxiv astro-ph/0309736 v2 pith:4NRKMDQO submitted 2003-09-26 astro-ph

Ultraviolet Line Emission from Metals in the Low-Redshift Intergalactic Medium

classification astro-ph
keywords emissiongalacticwindsintergalacticlinemediumregionsbackground
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use a high-resolution cosmological simulation that includes hydrodynamics, multiphase star formation, and galactic winds to predict the distribution of metal line emission at z~0 from the intergalactic medium (IGM). We focus on two ultraviolet doublet transitions, OVI 1032,1038 and CIV 1548,1551. Emission from filaments with moderate overdensities is orders of magnitude smaller than the background, but isolated emission from enriched, dense regions with T~10^5-10^5.5 K and characteristic sizes of 50-100 kpc can be detected above the background. We show that the emission from these regions is substantially greater when we use the metallicities predicted by the simulation (which includes enrichment through galactic winds) than when we assume a uniform IGM metallicity. Luminous regions correspond to volumes that have recently been influenced by galactic winds. We also show that the line emission is clustered on scales ~1 h^-1 Mpc. We argue that although these transitions are not effective tracers of the warm-hot intergalactic medium, they do provide a route to study the chemical enrichment of the IGM and the physics of galactic winds.

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