Joint Lyα emitters - quasars reionization constraints
arXiv:1202.2884 · doi:10.1111/j.1365-2966.2012.20907.x
Abstract
We present a novel method to investigate cosmic reionization, using joint spectral information on high redshift Lyman Alpha Emitters (LAE) and quasars (QSOs). Although LAEs have been proposed as reionization probes, their use is hampered by the fact their Lyα line is damped not only by intergalactic HI but also internally by dust. Our method allows to overcome such degeneracy. First, we carefully calibrate a reionization simulation with QSO absorption line experiments. Then we identify LAEs in two simulation boxes at z=5.7 and z=6.6 and we build synthetic images/spectra of a prototypical LAE. At redshift 5.7, we find that the Lyα transmissivity (T_LAE) ~ 0.25, almost independent of the halo mass. This constancy arises from the conspiracy of two effects: (i) the intrinsic Lyα line width and (ii) the infall peculiar velocity. At higher redshift, z=6.6, where the transmissivity is instead largely set by the local HI abundance and LAE transmissivity consequently increases with halo mass from 0.15 to 0.3. Although outflows are present, they are efficiently pressure-confined by infall in a small region around the LAE; hence they only marginally affect transmissivity. Finally, we cast LOS originating from background QSOs passing through foreground LAEs at different impact parameters, and compute the quasar transmissivity (T_QSO). At smaller impact parameters, d < 1 cMpc, a positive correlation between T_QSO and halo mass is found at z = 5.7, which tends to become less pronounced (i.e. flatter) at larger distances. By cross-correlating T_LAE and T_QSO, we can obtain a HI density estimate unaffected by dust. At z= 5.7, the cross-correlation is relatively weak,whereas at z = 6.6 we find a clear positive correlation. We conclude by briefly discussing the perspectives for the application of the method to existing and forthcoming data.
14 pages, 15 figures
References in corpus (26)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- A luminous quasar at a redshift of z = 7.085
- Observational constraints on Cosmic Reionization
- The Subaru/XMM-Newton Deep Survey (SXDS). IV. Evolution of Lya Emitters from z=3.1 to 5.7 in the 1 deg^2 Field: Luminosity Functions and AGN
- 3D Lyman-alpha radiation transfer. I. Understanding Lyman-alpha line profile morphologies
- The End of the Reionization Epoch Probed by Ly-alpha Emitters at z=6.5 in the Subaru Deep Field
- 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
- Spectroscopic confirmation of z~7 LBGs: probing the earliest galaxies and the epoch of reionization
- Four quasars above redshift 6 discovered by the Canada-France High-z Quasar Survey
- Studying Reionization with Ly-alpha Emitters
- Completing the Census of Ly-alpha Emitters at the Reionization Epoch
- 3D Lyman-alpha radiation transfer. III. Constraints on gas and stellar properties of z~3 Lyman break galaxies (LBG) and implications for high-z LBGs and Lyman-alpha emitters(LAEs)
- The Detectability of Lyman Alpha Emission from Galaxies during the Epoch of Reionization
- Six more quasars at redshift 6 discovered by the Canada-France High-z Quasar Survey
- Luminosity Functions of Lyman Alpha Emitting Galaxies and Cosmic Reionization of Hydrogen
- Lyman alpha Radiative Transfer in Cosmological Simulations using Adaptive Mesh Refinement
- The simulated 21 cm signal during the epoch of reionization : full modeling of the Ly-alpha pumping
- Lyman-alpha radiative transfer during the Epoch of Reionization: contribution to 21-cm signal fluctuations
- Effect of the intergalactic environment on the observability of Ly-alpha emitters during reionization
- Shapley Optical Survey II: The effect of environment on the colour-magnitude relation and galaxy colours
- Signatures of reionization on Lyman alpha emitters
- Joint QSO-CMB constraints on reionization history
- Reionization constraints using Principal Component Analysis
- Distinctive rings in the 21 cm signal of the epoch of reionization
- Reionization: Characteristic Scales, Topology and Observability