First Weak-lensing Results from "See Change": Quantifying Dark Matter in the Two Z>1.5 High-redshift Galaxy Clusters SPT-CL J2040-4451 and IDCS J1426+3508
M. James Jee, Jongwan Ko, Saul Perlmutter, Anthony Gonzalez, Mark, Brodwin, Eric Linder, Peter Eisenhardt

TL;DR
This study uses HST WFC3 imaging to perform weak-lensing analysis of two high-redshift galaxy clusters, providing new mass estimates and insights into their morphology and rarity within the context of cosmological models.
Contribution
First weak-lensing measurements of high-redshift clusters using WFC3 IR images, demonstrating the potential for more precise mass estimates and morphological analysis.
Findings
Mass of SPT-CL J2040-4451 is ~8.6x10^14 M_sun, indicating a rare, massive cluster.
Mass of IDCS J1426+3508 is consistent with previous results, with reduced statistical uncertainty.
The clusters exhibit relaxed morphology with mass centroids aligned with galaxy and X-ray distributions.
Abstract
We present a weak-lensing study of SPT-CLJ2040-4451 and IDCSJ1426+3508 at z=1.48 and 1.75, respectively. The two clusters were observed in our "See Change" program, a HST survey of 12 massive high-redshift clusters aimed at high-z supernova measurements and weak-lensing estimation of accurate cluster masses. We detect weak but significant galaxy shape distortions using IR images from the WFC3, which has not yet been used for weak-lensing studies. Both clusters appear to possess relaxed morphology in projected mass distribution, and their mass centroids agree nicely with those defined by both the galaxy luminosity and X-ray emission. Using an NFW profile, for which we assume that the mass is tightly correlated with the concentration parameter, we determine the masses of SPT-CL J2040-4451 and IDCS J1426+3508 to be M_{200}=8.6_{-1.4}^{+1.7}x10^14 M_sun and 2.2_{-0.7}^{+1.1}x10^14 M_sun,…
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