Tracing the Cosmic Metal Evolution in the Low-Redshift Intergalactic Medium
J. Michael Shull, Charles. W. Danforth, and Evan M. Tilton

TL;DR
This study measures and models the metal abundances in the low-redshift intergalactic medium using Hubble data, revealing metal evolution, ionization conditions, and the distribution of cosmic metals.
Contribution
It provides new measurements of ion abundances and ionization corrections in the low-redshift IGM, improving understanding of metal evolution and distribution.
Findings
C IV and Si IV increased by a factor of ~10 since z=5.5
IGM metal density is about 10% of metals produced by star formation
Enhanced Si/C ratio indicates alpha-process element enrichment
Abstract
Using the Cosmic Origins Spectrograph aboard the Hubble Space Telescope, we measured the abundances of six ions (C III, C IV, Si III, Si IV, N V, O VI) in the low-redshift (z < 0.4) intergalactic medium and explored C and Si ionization corrections from adjacent ion stages. Both C IV and Si IV have increased in abundance by a factor of ~10 from z = 5.5 to the present. We derive ion mass densities, (rho_ion) = (Omega_ion)(rho_cr) with Omega_ion expressed relative to closure density. Our models of the mass-abundance ratios, (Si III / Si IV) = 0.67(+0.35,-0.19), (C III / C IV) = 0.70(+0.43,-0.20), and (Omega_CIII + Omega_CIV) / (Omega_SiIII + Omega_SiIV) = 4.9(+2.2,-1.1), are consistent with a hydrogen photoionization rate Gamma_H = (8 +/- 2) x 10^{-14} s^{-1} at z < 0.4 and specific intensity I_0 = (3 +/- 1) x 10^{-23} erg/(cm^2 s Hz sr) at the Lyman limit. We find mean photoionization…
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