Title

Lyman Continuum Escape Fraction of Faint Galaxies at z 3.3 in the CANDELS/GOODS-North, EGS, and COSMOS Fields with LBC

Authors

A. Grazian, Osservatorio Astronomico Roma
E. Giallongo, Osservatorio Astronomico Roma
D. Paris, Osservatorio Astronomico Roma
K. Boutsia, Carnegie Institution for Science
M. Dickinson, National Optical Astronomy Observatory
P. Santini, Osservatorio Astronomico Roma
R. Windhorst, Arizona State University
R. Jansen, Arizona State University
S. Cohen, Arizona State University
T. Ashcraft, Arizona State UniversityFollow
C. Scarlata, University of Minnesota
Michael J. Rutkowski, Minnesota State University, Mankato
E. Vanzella, Osservatorio Astronomico di Bologna
F. Cusano, Osservatorio Astronomico di Bologna
S. Cristiani, Osservatorio Astronomico di Trieste
M. Giavalisco, University of Massachusetts Amherst
H. Ferguson, Space Telescope Science Institute
A. Koekemoer, Space Telescope Science Institute
N. Grogin, Space Telescope Science Institute
M. Castellano, Osservatorio Astronomico Roma
F. Fiore, Osservatorio Astronomico Roma
A. Fontana, Osservatorio Astronomico Roma
F. Marchi, Osservatorio Astronomico Roma
F. Pedichini, Osservatorio Astronomico Roma
L. Pentericci, Osservatorio Astronomico Roma
R. Amorin, University of Cambridge
G. Barro, University of California, Berkeley
A. Bonchi, Osservatorio Astronomico Roma
A. Bongiorno, Osservatorio Astronomico Roma
S. Faber, University of California, Santa Cruz
M. Fumana, INAF
A. Galametz, Max Planck Society
L. Guaita, Osservatorio Astronomico Roma
D. Kocevski, University of Kentucky
E. Merlin, Osservatorio Astronomico Roma
M. Nonino, Osservatorio Astronomico di Trieste
R. O'Connell, University of Virginia
S. Pilo, Osservatorio Astronomico Roma
R. Ryan, Space Telescope Science Institute
E. Sani, ESO Vitacura
R. Speziali, Osservatorio Astronomico Roma
V. Testa, Osservatorio Astronomico Roma
B. Weiner, University of Arizona
H. Yan, University of Missouri

Document Type

Article

Publication Date

6-1-2017

Abstract

Context. The reionization of the Universe is one of the most important topics of present-day astrophysical research. The most plausible candidates for the reionization process are star-forming galaxies, which according to the predictions of the majority of the theoretical and semi-analytical models should dominate the H i ionizing background at z ≳ 3.
Aims. We measure the Lyman continuum escape fraction, which is one of the key parameters used to compute the contribution of star-forming galaxies to the UV background. It provides the ratio between the photons produced at λ ≤ 912 Å rest-frame and those that are able to reach the inter-galactic medium, i.e. that are not absorbed by the neutral hydrogen or by the dust of the galaxy’s inter-stellar medium.
Methods. We used ultra-deep U-band imaging (U = 30.2 mag at 1σ) from Large Binocular Camera at the Large Binocular Telescope (LBC/LBT) in the CANDELS/GOODS-North field and deep imaging in the COSMOS and EGS fields in order to estimate the Lyman continuum escape fraction of 69 star-forming galaxies with secure spectroscopic redshifts at 3.27 ≤ z ≤ 3.40 to faint magnitude limits (L = 0.2L∗, or equivalently M1500 ~ − 19). The narrow redshift range implies that the LBC U-band filter exclusively samples the λ ≤ 912 Å rest-frame wavelengths.
Results. We measured through stacks a stringent upper limit (σ) for the relative escape fraction of H i ionizing photons from bright galaxies (L>L∗), while for the faint population (L = 0.2L∗) the limit to the escape fraction is ≲ 10%. We computed the contribution of star-forming galaxies to the observed UV background at z ~ 3 and find that it is not sufficient to keep the Universe ionized at these redshifts unless their escape fraction increases significantly (≥ 10%) at low luminosities (M1500 ≥ − 19).
Conclusions. We compare our results on the Lyman continuum escape fraction of high-z galaxies with recent estimates in the literature, and discuss future prospects to shed light on the end of the Dark Ages. In the future, strong gravitational lensing will be fundamental in order to measure the Lyman continuum escape fraction down to faint magnitudes (M1500 ~ − 16) that are inaccessible with the present instrumentation on blank fields. These results will be important in order to quantify the role of faint galaxies to the reionization budget.

Department

Physics and Astronomy

Print ISSN

0004-6361

Online ISSN

1432-0746

Publication Title

Astronomy and Astrophysics

DOI

10.1051/0004-6361/201730447

Share

COinS