A Minihalo Model for the Lyman Limit Absorption Systems at High Redshift
arXiv:astro-ph/9712119 · doi:10.1086/311184
Abstract
We propose that a large fraction of the QSO Lyman limit absorption systems (LLS) observed at high redshift (z > 3) originate from gas trapped in small objects, such as minihalos, that form prior to reionization. In the absence of a strong UV flux, the gas is predominantly neutral and may form clouds with HI column density NHI > 10^18 cm^-2. Due to their high densities and high HI column densities, these clouds are not destroyed by the onset of the UV background at a later time. Thus, if not disrupted by other processes, such as mergers into larger systems or `blow away' by supernovae, they will produce LLS. We show that the observed number density of LLS at high redshifts can well be reproduced by the survived `minihalos' in hierarchical clustering models such as the standard cold dark matter model. The number density of LLS in such a population increases with z even beyond the redshifts accessible to current observations and dies off quickly at z < 2. This population is distinct from other populations because the absorbing systems have small velocity widths and a close to primordial chemical composition. The existence of such a population requires that the reionization of the universe occurs late, at z < 20.
4 pages, 1 PostScript figure, accepted for publication in ApJ Letters, 8 Dec 1997
References in corpus (1)
Cited by in corpus (29)
- In the Beginning: The First Sources of Light and the Reionization of the Universe
- Reionization of the Inhomogeneous Universe
- Can Photoionization Squelching Resolve the Sub-structure Crisis?
- The Effects of Photoionization on Galaxy Formation - II: Satellites in the Local Group
- The Radiative Feedback of the First Cosmological Objects
- The observed ionization rate of the intergalactic medium and the ionizing emissivity at z >5: Evidence for a photon starved and extended epoch of reionization
- The Reionization of the Universe by the First Stars and Quasars
- The Observed Probability Distribution Function, Power Spectrum, and Correlation Function of the Transmitted Flux in the Lyman-alpha Forest
- The Photo-Evaporation of Dwarf Galaxies During Reionization
- Multi--dimensional Cosmological Radiative Transfer with a Variable Eddington Tensor Formalism
- Fluorescent Ly-alpha emission from the high-redshift intergalactic medium
- The Giant Gemini GMOS survey of z>4.4 quasars - I. Measuring the mean free path across cosmic time
- Inhomogeneous Reionization Regulated by Radiative and Stellar Feedbacks
- A Definitive Survey for Lyman Limit Systems at z~3.5 with the Sloan Digital Sky Survey
- Radiative Transfer Effects during Photoheating of the Intergalactic Medium
- Adaptive Ray Tracing for Radiative Transfer around Point Sources
- Photon Consumption in Minihalos during Cosmological Reionization
- Resolving the Lyman-alpha Forest
- Absorption Systems in the Spectra of 66 z > 4 Quasars
- Discovery of a Primitive Damped Lyman alpha Absorber Near an X-ray Bright Galaxy Group in the Virgo Cluster
- First stars in Damped Lyman Alpha systems
- Lyman Limit Systems in Cosmological Simulations
- Damped Lyman alpha systems and galaxy formation models - II. High ions and Lyman limit systems
- On the Two-Phase Structure of Protogalactic Clouds
- Absorption Line Signatures of Gas in Mini Dark Matter Halos
- Sharp HI edges at high z: the gas distribution from Damped Lyman-alpha to Lyman-limit absorption systems
- On the Redshift Evolution of MgII Absorption Systems
- Investigating the Physics and Environment of Lyman Limit Systems in Cosmological Simulations
- Lensing by Lyman Limit Systems: Determining the Mass to Gas Ratio