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arxiv: 1809.06378 · v2 · pith:F4F6HLG2new · submitted 2018-09-17 · 🌌 astro-ph.CO · astro-ph.GA

High Confidence Optical Confirmations Among the High Signal-to-Noise Planck Cluster Candidates

classification 🌌 astro-ph.CO astro-ph.GA
keywords clustersgalaxyhighpsz2candidatessignal-to-noisefieldsidentified
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We report on newly identified galaxy clusters from the high signal-to-noise ($>5$-$\sigma$) end of the second all-sky \textit{Planck} Sunyaev-Zel'dovich (SZ) catalog (PSZ2). The clusters are identified in deep, optical imaging from the Kitt Peak National Observatory 4m Mayall telescope taken between 2014 and 2017. Here we focus on the highest richness systems, and identify galaxy clusters through a combination of the maxBCG algorithm and visual image inspection. Galaxy clusters are considered to be confirmed if they are both rich and spatially coincident ($\lesssim 6'$) with the reported PSZ2 position. Of the 85 fields containing unconfirmed PSZ2 candidates observed, we find 15 (17.6% of the observed sample) corresponding galaxy clusters ($ 0.13 < z < 0.78$), 12 of which are previously unrecognized as counterparts. To explain this low identification fraction, we consider three possible scenarios: that clusters are (1) mostly at low-z, (2) mostly at high-z, or (3) located in fields with high object density. None of these scenarios alone can account for the low purity of rich galaxy clusters among the high signal-to-noise PSZ2 unconfirmed candidates.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Optical follow-up study of 32 high-redshift galaxy cluster candidates from Planck with the William Herschel Telescope

    astro-ph.GA 2019-06 unverdicted novelty 3.0

    Optical follow-up of 32 Planck SZ candidates yields photometric redshifts and richness estimates confirming 18 (7) as at least half as rich as expected at z>0.5 (z>0.8), highlighting Eddington bias and projection effects.