Distortion of the luminosity function of high-redshift galaxies by gravitational lensing
arXiv:1502.03141 · doi:10.1088/0004-637X/806/2/256
Abstract
The observed properties of high redshift galaxies depend on the underlying foreground distribution of large scale structure, which distorts their intrinsic properties via gravitational lensing. We focus on the regime where the dominant contribution originates from a single lens and examine the statistics of gravitational lensing by a population of virialized and non-virialized structures using sub-mm galaxies at z ~ 2.6 and Lyman-break galaxies at redshifts z ~ 6 - 15 as the background sources. We quantify the effect of lensing on the luminosity function of the high redshift sources, focusing on the intermediate and small magnifications, mu < 2, which affect the majority of the background galaxies, and comparing to the case of strong lensing. We show that, depending on the intrinsic properties of the background galaxies, gravitational lensing can significantly affect the observed luminosity function even when no obvious strong lenses are present. Finally, we find that in the case of the Lyman-break galaxies it is important to account for the surface brightness profiles of both the foreground and the background galaxies when computing the lensing statistics, which introduces a selection criterion for the background galaxies that can actually be observed. Not taking this criterion into account leads to an overestimation of the number densities of very bright galaxies by nearly two orders of magnitude.
12 pages, 4 figures, 2 tables
References in corpus (12)
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- The Detection of a Population of Submillimeter-Bright, Strongly-Lensed Galaxies
- An ALMA survey of submillimetre galaxies in the Extended Chandra Deep Field South: High resolution 870um source counts
- Astrophysical and Cosmological Information from Large-scale sub-mm Surveys of Extragalactic Sources
- A Simple Technique for Predicting High-Redshift Galaxy Evolution
- New Constraints on the Faint-end of the UV Luminosity Function at z~7-8 using the Gravitational Lensing of the Hubble Frontier Fields Cluster A2744
- Correcting the z~8 Galaxy Luminosity Function for Gravitational Lensing Magnification Bias
- Measurement of Galaxy Clustering at z~7.2 and the Evolution of Galaxy Bias from 3.8<z<8 in the XDF, GOODS-S AND GOODS-N
- z~7-10 Galaxies behind Lensing Clusters: Contrast with Field Search Results
- Spatially Extended 21 cm Signal from Strongly Clustered UV and X-Ray Sources in the Early Universe
- The UV Continuum of z > 1 Star-forming Galaxies in the Hubble Ultraviolet UltraDeep Field
- Cosmic Dawn: Studies of the Earliest Galaxies and Their Role in Cosmic Reionization