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Title: Mass calibration and cosmological analysis of the SPT-SZ galaxy cluster sample using velocity dispersion σ v and x-ray Y X measurements

Journal Article · · The Astrophysical Journal (Online)

Here, we present a velocity-dispersion-based mass calibration of the South Pole Telescope Sunyaev-Zel'dovich effect survey (SPT-SZ) galaxy cluster sample. Using a homogeneously selected sample of 100 cluster candidates from 720 deg2 of the survey along with 63 velocity dispersion (σv) and 16 X-ray YX measurements of sample clusters, we simultaneously calibrate the mass-observable relation and constrain cosmological parameters. Our method accounts for cluster selection, cosmological sensitivity, and uncertainties in the mass calibrators. The calibrations using σv and YX are consistent at the 0.6σ level, with the σ v calibration preferring ~16% higher masses. We use the full SPTCL data set (SZ clusters+σv+YX) to measure σ8(Ωm/0.27)0.3 = 0.809 ± 0.036 within a flat ΛCDM model. The SPT cluster abundance is lower than preferred by either the WMAP9 or Planck+WMAP9 polarization (WP) data, but assuming that the sum of the neutrino masses is mν = 0.06 eV, we find the data sets to be consistent at the 1.0σ level for WMAP9 and 1.5σ for Planck+WP. Allowing for larger Σmν further reconciles the results. When we combine the SPTCL and Planck+WP data sets with information from baryon acoustic oscillations and Type Ia supernovae, the preferred cluster masses are 1.9σ higher than the YX calibration and 0.8σ higher than the σ v calibration. Given the scale of these shifts (~44% and ~23% in mass, respectively), we execute a goodness-of-fit test; it reveals no tension, indicating that the best-fit model provides an adequate description of the data. Using the multi-probe data set, we measure Ωm = 0.299 ± 0.009 and σ8 = 0.829 ± 0.011. Within a νCDM model we find Σmν = 0.148 ± 0.081 eV. We present a consistency test of the cosmic growth rate using SPT clusters. Allowing both the growth index γ and the dark energy equation-of-state parameter w to vary, we find γ = 0.73 ± 0.28 and w = –1.007 ± 0.065, demonstrating that the eΣxpansion and the growth histories are consistent with a ΛCDM universe (γ = 0.55; w = –1).

Research Organization:
Argonne National Laboratory (ANL), Argonne, IL (United States); Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States); Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States); Fermi National Accelerator Laboratory (FNAL), Batavia, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC), High Energy Physics (HEP)
Contributing Organization:
SPT
Grant/Contract Number:
AC02-07CH11359
OSTI ID:
1296743
Report Number(s):
FERMILAB-PUB-14-374-A; arXiv:1407.2942; 1305863
Journal Information:
The Astrophysical Journal (Online), Vol. 799, Issue 2; ISSN 1538-4357
Publisher:
Institute of Physics (IOP)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 109 works
Citation information provided by
Web of Science

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The Atacama Cosmology Telescope: Sunyaev-Zel'dovich Selected Galaxy Clusters at 148 GHz from Three Seasons of Data text January 2013
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Constraints on Cosmological Parameters from Future Galaxy Cluster Surveys text January 2000
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Constraining cosmological parameters using Sunyaev-Zel'dovich cluster surveys text January 2003
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Next generation cosmology: constraints from the Euclid galaxy cluster survey journal March 2016
SZE observables, pressure profiles and centre offsets in Magneticum simulation galaxy clusters journal April 2017
Galaxy Cluster Mass Reconstruction Project – IV. Understanding the effects of imperfect membership on cluster mass estimation journal August 2018
The Cluster-EAGLE project: a comparison of dynamical mass estimators using simulated clusters journal October 2018
Sunyaev–Zel’dovich effect and X-ray scaling relations from weak lensing mass calibration of 32 South Pole Telescope selected galaxy clusters journal December 2018
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The redshift evolution of X-ray and Sunyaev–Zel’dovich scaling relations in the fable simulations journal August 2019
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Planck 2015 results : XXVI. The Second journal September 2016
Planck 2015 results : XXIV. Cosmology from Sunyaev-Zeldovich cluster counts journal September 2016
Halo mass function: Baryon impact, fitting formulae and implications for cluster cosmology text January 2015
Next Generation Cosmology: Constraints from the Euclid Galaxy Cluster Survey text January 2015
CMB lensing tomography with the DES Science Verification galaxies text January 2015
Richness-based masses of rich and famous galaxy clusters text January 2016
SPT-GMOS: A Gemini/GMOS-South Spectroscopic Survey of Galaxy Clusters in the SPT-SZ Survey text January 2016
Exploring Cosmic Origins with CORE: Cluster Science text January 2017
A massive core for a cluster of galaxies at a redshift of 4.3 text January 2018
The Cluster-EAGLE project: a comparison of dynamical mass estimators using simulated clusters text January 2018
An application of machine learning techniques to galaxy cluster mass estimation using the MACSIS simulations text January 2018
Cluster Cosmology Constraints from the 2500 deg$^2$ SPT-SZ Survey: Inclusion of Weak Gravitational Lensing Data from Magellan and the Hubble Space Telescope text January 2018
Disruption of satellite galaxies in simulated groups and clusters: the roles of accretion time, baryons, and pre-processing text January 2019
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