z~7-10 Galaxies behind Lensing Clusters: Contrast with Field Search Results
arXiv:0805.0593 · doi:10.1088/0004-637X/690/2/1764
Abstract
We conduct a search for z>~7 dropout galaxies behind 11 massive lensing clusters using 21 arcmin**2 of deep HST NICMOS, ACS, and WFPC2 image data. In total, over this entire area, we find only one robust z~7 z-dropout candidate (previously reported around Abell 1689). Four less robust z-dropout and J-dropout candidates are also found. The nature of the four weaker candidates could not be precisely determined due to the limited depth of the available optical data, but detailed simulations suggest that all four could be low-redshift interlopers. We compare these numbers with what we might expect using the z~7 UV luminosity function (LF) determined from field searches. We predict 2.7 z~7 z-dropouts and 0.3 z~9 J-dropouts over our cluster search area, in reasonable agreement with our observational results, given the small numbers. The number of z>~7 candidates we find in the present search are much lower than has been reported in several previous studies of the prevalence of z>~7 galaxies behind lensing clusters. To understand these differences, we examined z>~7 candidates in other studies and conclude that only a small fraction are likely to be z>~7 galaxies. Our findings support models that show that gravitational lensing from clusters is of the most value for detecting galaxies at magnitudes brighter than L* (H<~ 27) where the LF is expected to be very steep. Use of these clusters to constrain the faint-end slope or determine the full LF is likely of less value due to the shallower effective slope measured for the LF at fainter magnitudes, as well as significant uncertainties introduced from modelling both the gravitational lensing and incompleteness.
9 pages, 3 figures, 5 tables, in press
References in corpus (12)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- UV Luminosity Functions at z~4, 5, and 6 from the HUDF and other Deep HST ACS Fields: Evolution and Star Formation History
- Galaxies in the Hubble Ultra Deep Field: I. Detection, Multiband Photometry, Photometric Redshifts, and Morphology
- Combining Strong and Weak Gravitational Lensing in Abell 1689
- z~7-10 Galaxies in the HUDF and GOODS fields, and their UV Luminosity Functions
- Discovery of a Ringlike Dark Matter Structure in the Core of the Galaxy Cluster Cl 0024+17
- Discovery of a Very Bright Strongly-Lensed Galaxy Candidate at z ~ 7.6
- A Hubble & Spitzer Space Telescope Survey for Gravitationally-Lensed Galaxies: Further Evidence for a Significant Population of Low Luminosity Galaxies beyond Redshift Seven
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- Rapid Evolution in the Most Luminous Galaxies During the First 900 Million Years
- Constraining the population of 6 < z < 10 star-forming galaxies with deep near-IR images of lensing clusters
- Where is the matter in the Merging Cluster Abell 2218?
Cited by in corpus (8)
- z~7-10 Galaxies in the HUDF and GOODS fields, and their UV Luminosity Functions
- Mass and magnification maps for the Hubble Space Telescope Frontier Fields clusters: implications for high redshift studies
- z~2-9 Galaxies Magnified by the Hubble Frontier Field Clusters II: Luminosity Functions and Constraints on a Faint-End Turnover
- Full Lensing Analysis of Abell 1703: Comparison of Independent Lens-Modelling Techniques
- Ultra-faint high-redshift galaxies in the Frontier Fields
- Characterising the evolving -band luminosity function using the UltraVISTA, CANDELS and HUDF surveys
- Distortion of the luminosity function of high-redshift galaxies by gravitational lensing
- VLT/Magellan spectroscopy of 29 strong lensing selected galaxy clusters