Extinction Correction Significantly Influences the Estimate of the Lyα Escape Fraction.

Bibliographic Details
Title: Extinction Correction Significantly Influences the Estimate of the Lyα Escape Fraction.
Authors: Xian Zhong Zheng1, Fang Xia An1,2, Cai-Na Hao3, Xiao-Yang Xia3, Jia-Sheng Huang4
Source: Astrophysical Journal. 2/1/2017, Vol. 835 Issue 2, p1-1. 1p.
Subject Terms: *GALACTIC evolution, *EMISSION-line galaxies, *REDSHIFT, *INTERSTELLAR reddening, *STELLAR luminosity function
Abstract: The Lyα escape fraction is a key measure to constrain the neutral state of the intergalactic medium and then to understand how the universe was fully reionized. We combine deep narrowband imaging data from the custom-made filter NB393 and the filter centered at 2.14 μm to examine the Lyα emitters and Hα emitters at the same redshift z = 2.24. The combination of these two populations allows us to determine the Lyα escape fraction at z = 2.24. Over an area of 383 arcmin2 in the Extended Chandra Deep Field South (ECDFS), 124 Lyα emitters are detected down to NB393 = 26.4 mag at the 5σ level, and 56 Hα emitters come from An et al. Of these, four have both Lyα and Hα emissions (LAHAEs). We also collect the Lyα emitters and Hα emitters at z = 2.24 in the COSMOS field from the literature, and increase the number of LAHAEs to 15 in total. About one-third of them are AGNs. We measure the individual/volumetric Lyα escape fraction by comparing the observed Lyα luminosity/luminosity density to the extinction-corrected Hα luminosity/luminosity density. We revisit the extinction correction for Hα emitters using the Galactic extinction law with color excess for nebular emission. We also adopt the Calzetti extinction law together with an identical color excess for stellar and nebular regions to explore how the uncertainties in extinction correction affect the estimate of individual and global Lyα escape fractions. In both cases, an anti-correlation between the Lyα escape fraction and dust attenuation is found among the LAHAEs, suggesting that dust absorption is responsible for the suppression of the escaping Lyα photons. However, the estimated Lyα escape fraction of individual LAHAEs varies by up to ∼3 percentage points between the two methods of extinction correction. We find the global Lyα escape fraction at z = 2.24 to be (3.7 ± 1.4)% in the ECDFS. The variation in the color excess of the extinction causes a discrepancy of ∼1 percentage point in the global Lyα escape fraction. [ABSTRACT FROM AUTHOR]
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Database: Academic Search Complete
More Details
ISSN:0004637X
DOI:10.3847/1538-4357/835/2/116
Published in:Astrophysical Journal
Language:English