Simulated metal and HI absorption lines at the conclusion of Reionization
arXiv:1706.01072 · doi:10.1093/mnras/stx1371
Abstract
We present a theoretical study of intergalactic metal absorption lines imprinted in the spectra of distant quasars during and after the Epoch of Reionization (EoR). We use high resolution hydrodynamical simulations at high redshift (), assuming a uniform UV background Haardt--Madau 12, post-processing with CLOUDY photoionization models and Voigt profile fitting to accurately calculate column densities of the ions CII, CIV, SiII, SiIV and OI in the intergalactic medium (IGM). In addition, we generate mock observations of neutral Hydrogen (HI) at . Our simulations successfully reproduce the evolution of the cosmological mass density () of CII and CIV, with exceeding at , consistent with the current picture of the tail of the EoR. The simulated CII exhibits a bimodal distribution with large absorptions in and around galaxies, and some traces in the lower density IGM. We find some discrepancies between the observed and simulated column density relationships among different ionic species at , probably due to uncertainties in the assumed UV background. Finally, our simulations are in good agreement with observations of the HI column density distribution function at and the HI cosmological mass density at .
17 pages, 11 figures. Published: 03 June 2017
References in corpus (28)
- Cosmic Star Formation History
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- The 2013 Release of Cloudy
- Evidence of patchy hydrogen reionization from an extreme Ly trough below redshift six
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- On the (Non)Evolution of HI Disks over Cosmic Time
- Damped Lyman Alpha Systems in Galaxy Formation Simulations
- The Neutral Hydrogen Cosmological Mass Density at z=5
- Metal and molecule cooling in simulations of structure formation
- Metal and molecule cooling in simulations of structure formation
- A downturn in intergalactic CIV as redshift 6 is approached
- Simulating cosmic metal enrichment by the first galaxies
- Damped Lyman-alpha absorbers as a probe of stellar feedback
- The Keck+Magellan Survey for Lyman Limit Absorption I: The Frequency Distribution of Super Lyman Limit Systems
- Extremely metal-poor gas at a redshift of 7
- Reproducing the Kinematics of Damped Lyman-alpha Systems
- Intergalactic CIV absorption at redshifts 5.4 to 6
- Where is the Molecular Hydrogen in Damped Lyman-Alpha Absorbers?
- High Redshift Intergalactic C IV Abundance Measurements from the Near-Infrared Spectra of Two z~6 QSOs
- Statistical properties of damped Lyman-alpha systems from Sloan Digital Sky Survey DR12
- Properties of QSO Metal Line Absorption Systems at High Redshifts: Nature and Evolution of the Absorbers and New Evidence on Escape of Ionizing Radiation from Galaxies
- The ionizing background at the end of overlap
- The Reionization of Carbon
- Metals in the z~3 intergalactic medium: results from an ultra-high signal-to-noise ratio UVES quasar spectrum
- The evolution of the star formation rate function and cosmic star formation rate density of galaxies at
- Large-scale environment of CIV absorption systems -II. Spectroscopy of Lyman- emitters
- Theoretical study of an LAE-CIV absorption pair at z = 5.7
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- The XQR-30 Metal Absorber Catalog: 778 Absorption Systems Spanning 2 < z < 6.5
- An evolving and mass dependent - relation for galaxies
- The evolution of the Si IV content in the Universe from the epoch of reionization to cosmic noon
- Examining the Decline in the C IV Content of the Universe over 4.3 < z < 6.3 using the E-XQR-30 Sample
- The comoving mass density of MgII from to
- Aligned metal absorbers and the ultraviolet background at the end of reionization
- The effects of binary stars on galaxies and metal-enriched gas during reionization
- Cospatial 21 cm and metal-line absorbers in the epoch of reionization -- I : Incidence and observability