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Observations of compact sources in galaxy clusters using MUSTANG2

  • Simon R. Dicker
  • , Elia S. Battistelli
  • , Tanay Bhandarkar
  • , Mark J. Devlin
  • , Shannon M. Duff
  • , Gene Hilton
  • , Matt Hilton
  • , Adam D. Hincks
  • , Johannes Hubmayr
  • , Kevin Huffenberger
  • , John P. Hughes
  • , Luca Di Mascolo
  • , Brian S. Mason
  • , J. A.B. Mates
  • , Jeff Mcmahon
  • , Tony Mroczkowski
  • , Sigurd Naess
  • , John Orlowski-Scherer
  • , Bruce Partridge
  • , Federico Radiconi
  • Charles Romero, Craig L. Sarazin, Neelima Sehgal, Jonathan Sievers, Cristóbal Sifón, Joel Ullom, Leila R. Vale, Michael R. Vissers, Zhilei Xu
  • University of Pennsylvania
  • University of Rome La Sapienza
  • National Institute of Standards and Technology
  • University of KwaZulu-Natal
  • University of Toronto
  • Florida State University
  • Rutgers - The State University of New Jersey, New Brunswick
  • University of Trieste
  • Osservatorio Astronomico di Trieste
  • IFPU - Institute for Fundamental Physics of the Universe
  • National Science Foundation
  • The University of Chicago
  • European Southern Observatory
  • Simons Foundation
  • Haverford College
  • Green Bank Observatory
  • University of Virginia
  • McGill University
  • Pontificia Universidad Católica de Valparaíso
  • Massachusetts Institute of Technology

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Compact sources can cause scatter in the scaling relationships between the amplitude of the thermal Sunyaev-Zel'dovich Effect (tSZE) in galaxy clusters and cluster mass. Estimates of the importance of this scatter vary - largely due to limited data on sources in clusters at the frequencies at which tSZE cluster surveys operate. In this paper, we present 90 GHz compact source measurements from a sample of 30 clusters observed using the MUSTANG2 instrument on the Green Bank Telescope. We present simulations of how a source's flux density, spectral index, and angular separation from the cluster's centre affect the measured tSZE in clusters detected by the Atacama Cosmology Telescope (ACT). By comparing the MUSTANG2 measurements with these simulations we calibrate an empirical relationship between 1.4 GHz flux densities from radio surveys and source contamination in ACT tSZE measurements. We find 3 per cent of the ACT clusters have more than a 20 per cent decrease in Compton-y but another 3 per cent have a 10 per cent increase in the Compton-y due to the matched filters used to find clusters. As sources affect the measured tSZE signal and hence the likelihood that a cluster will be detected, testing the level of source contamination in the tSZE signal using a tSZE-selected catalogue is inherently biased. We confirm this by comparing the ACT tSZE catalogue with optically and X-ray-selected cluster catalogues. There is a strong case for a large, high-resolution survey of clusters to better characterize their source population.

Original languageEnglish
Pages (from-to)2600-2612
Number of pages13
JournalMonthly Notices of the Royal Astronomical Society
Volume508
Issue number2
DOIs
StatePublished - Dec 1 2021

Keywords

  • cosmic background radiation
  • galaxies: clusters: general

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