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SPT clusters with des and HST weak lensing. II. Cosmological constraints from the abundance of massive halos

  • (SPT and DES Collaborations)
  • Ludwig Maximilian University of Munich
  • University of Innsbruck
  • Argonne National Laboratory
  • The University of Chicago
  • Max Planck Institute for Extraterrestrial Physics
  • University of Bonn
  • NSF's NOIRLab
  • Cardiff University
  • Laboratório Interinstitucional de e-Astronomia
  • Fermi National Accelerator Laboratory
  • Kavli Institute for Particle Astrophysics and Cosmology
  • Stanford University
  • SLAC National Accelerator Laboratory
  • University of Michigan, Ann Arbor
  • University of Cambridge
  • University of Melbourne
  • National Institute of Standards and Technology
  • University of Colorado Boulder
  • Institute for High Energy Physics
  • University of Portsmouth
  • University of Cincinnati
  • University of Wisconsin-Madison
  • University of Pennsylvania
  • University of Sussex
  • University of Missouri at Kansas City
  • University College London
  • Carnegie Mellon University
  • Instituto de Astrofísica de Canarias
  • University of La Laguna
  • University of Illinois at Urbana-Champaign
  • Institute of Space Studies of Catalonia
  • CSICIEEC)
  • William Jewell College
  • Duke University
  • McGill University
  • University of KwaZulu-Natal
  • NASA Goddard Space Flight Center
  • California Institute of Technology

Research output: Contribution to journalArticlepeer-review

65 Scopus citations

Abstract

We present cosmological constraints from the abundance of galaxy clusters selected via the thermal Sunyaev-Zel'dovich (SZ) effect in South Pole Telescope (SPT) data with a simultaneous mass calibration using weak gravitational lensing data from the Dark Energy Survey (DES) and the Hubble Space Telescope (HST). The cluster sample is constructed from the combined SPT-SZ, SPTpol ECS, and SPTpol 500d surveys, and comprises 1,005 confirmed clusters in the redshift range 0.25-1.78 over a total sky area of 5200 deg2. We use DES Year 3 weak-lensing data for 688 clusters with redshifts z<0.95 and HST weak-lensing data for 39 clusters with 0.6<z<1.7. The weak-lensing measurements enable robust mass measurements of sample clusters and allow us to empirically constrain the SZ observable-mass relation without having to make strong assumptions about, e.g., the hydrodynamical state of the clusters. For a flat ΛCDM cosmology, and marginalizing over the sum of massive neutrinos, we measure ωm=0.286±0.032, σ8=0.817±0.026, and the parameter combination σ8(ωm/0.3)0.25=0.805±0.016. Our measurement of S8σ8ωm/0.3=0.795±0.029 and the constraint from Planck CMB anisotropies (2018 TT, TE, EE+lowE) differ by 1.1σ. In combination with that Planck dataset, we place a 95% upper limit on the sum of neutrino masses ∑mν<0.18 eV. When additionally allowing the dark energy equation of state parameter w to vary, we obtain w=-1.45±0.31 from our cluster-based analysis. In combination with Planck data, we measure w=-1.34-0.15+0.22, or a 2.2σ difference with a cosmological constant. We use the cluster abundance to measure σ8 in five redshift bins between 0.25 and 1.8, and we find the results to be consistent with structure growth as predicted by the ΛCDM model fit to Planck primary CMB data.

Original languageEnglish
Article number083510
JournalPhysical Review D
Volume110
Issue number8
DOIs
StatePublished - Oct 15 2024

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