Broadband Photometry of 105 Giant Arcs: Redshift Constraints and Implications for Giant Arc Statistics
arXiv:1108.1175 · doi:10.1088/0004-637X/744/2/156
Abstract
We measure the photometric properties of 105 giant arcs that were identified in systematic searches for galaxy-cluster-scale strong lenses in the Second Red-Sequence Cluster Survey (RCS-2) and the Sloan Digital Sky Survey (SDSS). The cluster lenses span 0.2 < z_lens < 1.2 in redshift, with a median z_lens = 0.58. Using broadband color criteria we sort the entire arc sample into redshift bins based on u-g and g-r colors, and also r-z colors for the ~90% of arcs that have z-band data. This analysis yields broad redshift constraints with 71 +5 -4 % of the arcs at z > 1.0, 64 +6 -4 % at z > 1.4, 56 +5 -4 % at z > 1.9, and 21 +4 -2 % at z > 2.7. The remaining 29 +3 -5 % have z < 1. The inferred median redshift is z_s = 2.0 +/- 0.1, in good agreement with a previous determination from a smaller sample of brighter arcs (g < 22.5). This agreement confirms that z_s = 2.0 +/- 0.1 is the typical redshift for giant arcs with g < 24 that are produced by cluster-scale strong lenses, and that there is no evidence for strong evolution in the redshift distribution of arcs over a wide range of g-band magnitudes (20 < g < 24). Establishing that half of all giant arcs are at z > 2 contributes significantly toward relieving the tension between the number of arcs observed and the number expected in a Lambda-CDM cosmology, but there is considerable evidence to suggest that a discrepancy persists. Additionally, this work confirms that forthcoming large samples of giant arcs will supply the observational community with many magnified galaxies at z > 2.
16 pages, 8 figures, 3 tables, Accepted to ApJ; University of Chicago Department of Astronomy & Astrophysics PhD Thesis
References in corpus (12)
- COSMOS Photometric Redshifts with 30-bands for 2-deg2
- A New Survey for Giant Arcs
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- A very bright, highly magnified Lyman-break galaxy at z=3.07
- The impact of gas physics on strong cluster lensing
- Gemini/GMOS Spectroscopy of 26 Strong Lensing Selected Galaxy Cluster Cores
- The Redshift Distribution of Giant Arcs in the Sloan Giant Arcs Survey
- Turning Back the Clock: Inferring the History of the Eight O'clock Arc
- Correlation between the Peak Spectral Energy of Gamma-Ray Bursts and the Peak Luminosity of the Underlying Supernovae: Implication for the Nature of GRB-SN Connection
- Strong lensing statistics and the power spectrum normalisation
- Imaging the Cosmic Matter Distribution using Gravitational Lensing of Pregalactic HI
- Lensing clusters of galaxies in the SDSS-III
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