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The Lyman α forest opacity and the metagalactic hydrogen ionization rate at z ∼ 2–4
Author(s) -
Bolton James S.,
Haehnelt Martin G.,
Viel Matteo,
Springel Volker
Publication year - 2005
Publication title -
monthly notices of the royal astronomical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.058
H-Index - 383
eISSN - 1365-2966
pISSN - 0035-8711
DOI - 10.1111/j.1365-2966.2005.08704.x
Subject(s) - physics , qsos , astrophysics , ionization , opacity , metallicity , spectral line , redshift , emissivity , quasar , galaxy , astronomy , ion , quantum mechanics , optics
Estimates of the metagalactic hydrogen ionization rate from the Lyα forest opacity in QSO absorption spectra depend on the complex density distribution of neutral hydrogen along the line of sight. We use a large suite of high‐resolution hydrodynamical simulations to investigate in detail the dependence of such estimates on physical and numerical parameters in the context of ΛCDM models. Adopting fiducial values for cosmological parameters together with published values of the temperature of the IGM and the effective optical depth, the metagalactic ionization rates that reproduce the Lyα effective optical depth at z =[2, 3, 4] are Γ HI =[1.3± 0.8 0.5 , 0.9 ± 0.3, 1.0± 0.5 0.3 ]× 10 −12 s −1 , respectively. The errors include estimates of uncertainties in the relevant physical parameters and the numerical accuracy of the simulations. We find the errors are dominated by the uncertainty in the temperature of the low‐density IGM. The estimated metagalactic hydrogen ionization rate for the neutral hydrogen distribution in the current concordance ΛCDM model is more than four times the value inferred for that in an Einstein–de Sitter model of the same rms‐density‐fluctuation amplitude σ 8 . The estimated ionization rate is also more than double that expected from updated estimates of the emissivity of observed QSOs alone. A substantial contribution from galaxies appears to be required at all redshifts.

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