RELICS: Strong Lens Models for Five Galaxy Clusters From the Reionization Lensing Cluster Survey
Catherine Cerny, Keren Sharon, Felipe Andrade-Santos, Roberto J., Avila, Marusa Bradac, Larry D. Bradley, Daniela Carrasco, Dan Coe, Nicole G., Czakon, William A. Dawson, Brenda L. Frye, Austin T. Hoag, Kuang-Han Huang,, Traci L. Johnson, Christine Jones, Daniel Lam

TL;DR
This paper presents detailed strong lens models for five galaxy clusters from the RELICS survey, enabling better estimation of high-redshift galaxy properties and survey volume, with quantified uncertainties and publicly available data.
Contribution
First five lens models from the RELICS survey are provided, including spectroscopic constraints and uncertainty analysis, improving high-redshift galaxy studies.
Findings
Magnification constrained to better than 20% in most of the field.
Clusters exhibit similar lensing efficiencies to Hubble Frontier Fields.
Models are publicly available for community use.
Abstract
Strong gravitational lensing by galaxy clusters magnifies background galaxies, enhancing our ability to discover statistically significant samples of galaxies at z>6, in order to constrain the high-redshift galaxy luminosity functions. Here, we present the first five lens models out of the Reionization Lensing Cluster Survey (RELICS) Hubble Treasury Program, based on new HST WFC3/IR and ACS imaging of the clusters RXC J0142.9+4438, Abell 2537, Abell 2163, RXC J2211.7-0349, and ACT-CLJ0102-49151. The derived lensing magnification is essential for estimating the intrinsic properties of high-redshift galaxy candidates, and properly accounting for the survey volume. We report on new spectroscopic redshifts of multiply imaged lensed galaxies behind these clusters, which are used as constraints, and detail our strategy to reduce systematic uncertainties due to lack of spectroscopic…
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