Self-shielding Effects on the Column Density Distribution of Damped Lyman Alpha Systems
arXiv:astro-ph/0201275 · doi:10.1086/340330
Abstract
We calculate the column density distribution of damped Lyman alpha systems, modeled as spherical isothermal gaseous halos ionized by the external cosmic background. The effects of self-shielding introduce a hump in this distribution, at a column density N_{HI} \sim 1.6x10^{17} X^{-1} cm^{-2}, where X is the neutral fraction at the radius where self-shielding starts being important. The most recent compilation of the column density distribution by Storrie-Lombardi & Wolfe shows marginal evidence for the detection of this feature due to self-shielding, suggesting a value X \sim 10^{-3}. Assuming a photoionization rate Γ\sim 10^{-12} s^{-1} from the external ionizing background, the radius where self-shielding occurs is inferred to be about 3.8kpc. If damped Lyman alpha systems consist of a clumpy medium, this should be interpreted as the typical size of the gas clumps in the region where they become self-shielding. Clumps of this size with typical column densities N_H \sim 3x10^{20} cm^{-2} would be in hydrostatic equilibrium at the characteristic photoionization temperature \sim 10^4 K if they do not contain dark matter. Since this size is similar to the overall radius of damped \lya systems in Cold Dark Matter models, where all halos are assumed to contain similar gas clouds producing damped absorbers, this suggests that the gas in damped absorbers is in fact not highly clumped.
9 pages, 3 eps figures, references added, Fig.2 modified, the inferred size of the clouds increases a little, accepted for publication in ApJ Letters
Cited by in corpus (49)
- On the evolution of the HI column density distribution in cosmological simulations
- Formation of early-type galaxies from cosmological initial conditions
- The SDSS Damped Lya Survey: Data Release 3
- The Evolution of the Intergalactic Medium
- Absorption line systems in simulated galaxies fed by cold streams
- Lyman-alpha Cooling Emission from Galaxy Formation
- Fluorescent Ly-alpha emission from the high-redshift intergalactic medium
- Monte Carlo Simulation of Lyman Alpha Scattering and Application to Damped Lyman Alpha Systems
- On Lyman-limit Systems and the Evolution of the Intergalactic Ionizing Background
- Cold accretion flows and the nature of high column density HI absorption at redshift 3
- Quasars Probing Quasars II: The Anisotropic Clustering of Optically Thick Absorbers around Quasars
- Through Thick and Thin - HI Absorption in Cosmological Simulations
- Physical effects on the Lyman-alpha forest flux power spectrum: damping wings, ionizing radiation fluctuations, and galactic winds
- Lyman-alpha Emission From Cosmic Structure I: Fluorescence
- The Column Density Distribution and Continuum Opacity of the Intergalactic and Circumgalactic Medium at Redshift <z>=2.4
- A Homogeneous Sample of Sub-DLAs II: Statistical, Kinematic and Chemical Properties
- On the rapid demise of Lyman-alpha emitters at z>7 due to the increasing incidence of optically thick absorption systems
- The Keck+Magellan Survey for Lyman Limit Absorption I: The Frequency Distribution of Super Lyman Limit Systems
- Models of the Thermal Evolution of the Intergalactic Medium After Reionization
- The HST/ACS+WFC3 Survey for Lyman Limit Systems II: Science
- MUSEQuBES: Calibrating the redshifts of Ly α emitters using stacked circumgalactic medium absorption profiles
- Filamentary Infall of Cold Gas and Escape of Lyman Alpha and Hydrogen Ionizing Radiation from an Interacting High-Redshift Galaxy
- A survey for redshifted molecular and atomic absorption lines - II. Associated HI, OH and millimetre lines in the z >~ 3 Parkes quarter-Jansky flat-spectrum sample
- The Simulated HI Sky at low redshift
- The 21cm Power Spectrum After Reionization
- Faint extended Lyalpha emission due to star formation at the centre of high-column density QSO absorption systems
- Possible Detection of Lyman-alpha Fluorescence from a Damped Lyman Alpha system at Redshift z=2.8
- A z = 3 Lyman Alpha Blob Associated with a Damped Lyman Alpha System Proximate to its Background Quasar
- The Effect of High Column Density Systems on the Measurement of the Lyman αForest Correlation Function
- Effects of Ultraviolet Background and Local Stellar Radiation on the H_I Column Density Distribution
- Neutral CGM as damped Lyα absorbers at high redshift
- The Probability Distribution of the Lya transmitted flux from a sample of SDSS quasars
- On the decreasing fraction of Strong Ly Emitters around -
- Ly-alpha Radiative Transfer: Monte-Carlo Simulation of the Wouthuysen-Field Effect
- Mock Quasar-Lyman-α Forest Data-sets for the SDSS-III Baryon Oscillation Spectroscopic Survey
- Clues to the nature of damped Lyman alpha systems from chemical evolution models
- A Radio Polarisation Study of Magnetic Fields in the Small Magellanic Cloud
- Connecting cosmological accretion to strong Lyman-alpha absorbers
- Sub-damped Lyman alpha systems in the XQ-100 survey I -- Identification and contribution to the cosmological HI budget
- Imprints of the first billion years: Lyman limit systems at
- Sub-damped Lyman alpha systems in the XQ-100 survey II -- Chemical evolution at 2.4<z<4.3
- On the accuracy of common moment-based radiative transfer methods for simulating reionization
- Estimates for the impact of Ultraviolet Background fluctuations on galaxy clustering measurements
- Probing the Structure and Kinematics of the transition Layer between the Magellanic Stream and the Halo in HI
- Disentangling Resonant Scattering and Gas Motions in Galaxy Cluster Emission Line Profiles
- Empirical Constraints on Core Collapse Supernova Yields using Very Metal Poor Damped Lyman Alpha Absorbers
- The MUSE Extremely Deep Field: Classifying the Spectral Shapes of Lya Emitting Galaxies
- Molecular Shattering
- Rabacus: A Python Package for Analytic Cosmological Radiative Transfer Calculations