English

Weak Lensing Measurement of the Mass--Richness Relation of SDSS redMaPPer Clusters

Cosmology and Nongalactic Astrophysics 2017-04-05 v2

Abstract

We perform a measurement of the mass--richness relation of the redMaPPer galaxy cluster catalogue using weak lensing data from the Sloan Digital Sky Survey. We have carefully characterized a broad range of systematic uncertainties, including shear calibration errors, photo-zz biases, dilution by member galaxies, source obscuration, magnification bias, incorrect assumptions about cluster mass profiles, cluster centering, halo triaxiality, and projection effects. We also compare measurements of the lensing signal from two independently-produced shear and photometric redshift catalogues to characterize systematic errors in the lensing signal itself. Using a sample of 5,570 clusters from 0.1z0.330.1\le z\le 0.33, the normalization of our power-law mass vs.\ λ\lambda relation is log10[M200m/h1 M]\log_{10}[M_{200m}/h^{-1}\ M_{\odot}] = 14.344±0.02114.344 \pm 0.021 (statistical) ±0.023\pm 0.023 (systematic) at a richness λ=40\lambda=40, a 7 per cent calibration uncertainty, with a power-law index of 1.330.10+0.091.33^{+0.09}_{-0.10} (1σ1\sigma). The detailed systematics characterization in this work renders it the definitive weak lensing mass calibration for SDSS redMaPPer clusters at this time.

Keywords

Cite

@article{arxiv.1603.06953,
  title  = {Weak Lensing Measurement of the Mass--Richness Relation of SDSS redMaPPer Clusters},
  author = {Melanie Simet and Tom McClintock and Rachel Mandelbaum and Eduardo Rozo and Eli Rykoff and Erin Sheldon and Risa H. Wechsler},
  journal= {arXiv preprint arXiv:1603.06953},
  year   = {2017}
}

Comments

18 pages, 4 figures. Cosmological dependence updated from previous version