The expected abundance of Lyman- emitting primeval galaxies. I. General model predictions
arXiv:astro-ph/0312363
Abstract
We present model calculations for the expected surface density of Ly- emitting primeval galaxies (PGs) at high redshifts. We assume that elliptical galaxies and bulges of spiral galaxies (= spheroids) formed early in the universe and that the Ly- emitting PGs are these spheroids during their first burst of star formation at high redshift. One of the main assumptions of the models is that the Ly- bright phase of this first starburst in the spheroids is confined to a short period after its onset due to rapid formation of dust. The models do not only explain the failure of early surveys for Ly- emitting PGs but are also consistent with the limits of new surveys (e.g. the Calar Alto Deep Imaging Survey - CADIS). At faint detection limits W/m the surface density of Ly- emitters is expected to vary only weakly in the redshift range between and with values reaching its maximum at . At shallower detection limits, W/m the surface density of high-z Ly- emitters is expected to be a steep function of redshift and detection limit. This explains the low success in finding bright Ly- galaxies at . We demonstrate how the observed surface densities of Ly- emitting PGs derived from recent surveys constrain the parameters of our models. Finally, we discuss the possibility that two Ly- bright phases occur in the formation process of galaxies: An initial -- primeval -- phase in which dust is virtually non-existing, and a secondary later phase in which strong galactic winds as observed in some Lyman break galaxies facilitate the escape of Ly- photons after dust has already been formed.
18 pages, 12 figures, submitted to Astronomy & Astrophysics