SIMBAD references

2013MNRAS.436.1818F - Mon. Not. R. Astron. Soc., 436, 1818-1835 (2013/December-1)

The host haloes of OI absorbers in the reionization epoch.

FINLATOR K., MUNOZ J.A., OPPENHEIMER B.D., OH S.P., OZEL F. and DAVE R.

Abstract (from CDS):

We use a radiation hydrodynamic simulation of the hydrogen reionization epoch to study Oi absorbers at z ∼ 6. The intergalactic medium (IGM) is reionized before it is enriched; hence, Oi absorption originates within dark matter haloes. The predicted abundance of Oi absorbers is in reasonable agreement with observations. At z = 10, ~70 percent of sightlines through atomically cooled haloes encounter a visible (NOI > 1014/cm) column. Reionization ionizes and removes gas from haloes less massive than 108.4M, but 20 percent of sightlines through more massive haloes encounter visible columns even at z = 5. The mass scale of absorber host haloes is 10–100 times smaller than the haloes of Lyman-break galaxies and Lyman α emitters, hence absorption probes the dominant ionizing sources more directly. Oi absorbers have neutral hydrogen columns of 1019-1021/cm2, suggesting a close resemblance between objects selected in Oi and Hi absorption. Finally, the absorption in the foreground of the z = 7.085 quasar ULAS J1120+0641 cannot originate in a dark matter halo because halo gas at the observed Hi column density is enriched enough to violate the upper limits on the Oi column. By contrast, gas at less than one-third the cosmic mean density satisfies the constraints. Hence, the foreground absorption likely originates in the IGM.

Abstract Copyright: © 2013 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society (2013)

Journal keyword(s): galaxies: evolution - galaxies: formation - galaxies: haloes - galaxies: high-redshift - quasars: absorption lines - cosmology: theory

Simbad objects: 1

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