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Copacabana: a probabilistic membership assignment method for galaxy clusters

Copacabana: a probabilistic membership assignment method for galaxy clusters
Copacabana: a probabilistic membership assignment method for galaxy clusters
Cosmological analyses using galaxy clusters in optical/near-infrared photometric surveys require robust characterization of their galaxy content. Precisely determining which galaxies belong to a cluster is crucial. In this paper, we present the COlor Probabilistic Assignment of Clusters And BAyesiaN Analysis (Copacabana) algorithm. Copacabana computes membership probabilities for all galaxies within an aperture centred on the cluster using photometric redshifts, colours, and projected radial probability density functions. We use simulations to validate Copacabana and we show that it achieves up to 89 per cent membership accuracy with a mild dependence on photometric redshift uncertainties and choice of aperture size. We find that the precision of the photometric redshifts has the largest impact on the determination of the membership probabilities followed by the choice of the cluster aperture size. We also quantify how much these uncertainties in the membership probabilities affect the stellar mass–cluster mass scaling relation, a relation that directly impacts cosmology. Using the sum of the stellar masses weighted by membership probabilities (⁠μ*) as the observable, we find that Copacabana can reach an accuracy of 0.06 dex in the measurement of the scaling relation at low redshift for a Legacy Survey of Space and Time type survey. These results indicate the potential of Copacabana and μ* to be used in cosmological analyses of optically selected clusters in the future.
astro-ph.CO, astro-ph.GA
1365-2966
931-945
Esteves, J.H.
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Pereira, M.E.S.
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Soares-Santos, M.
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Annis, J.
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Farahi, A.
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Andrade-Oliveira, F.
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Barchi, P.
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Palmese, A.
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Welch, B.
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Aguena, M.
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Bacon, O. Alves D.
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Brooks, D.
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Kuehn, K.
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Lidman, C.
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Lima, M.
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Marshall, J.L.
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Mena-Fernández, J.
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Miquel, R.
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Ogando, R.L.C.
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Romer, A.K.
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Cid, D. Sanchez
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Wiseman, P.
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et al.
Esteves, J.H.
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Pereira, M.E.S.
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Soares-Santos, M.
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Annis, J.
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Farahi, A.
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Andrade-Oliveira, F.
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Barchi, P.
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Palmese, A.
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Brooks, D.
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Costanzi, M.
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Doel, P.
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Frieman, J.
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García-Bellido, J.
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Gruen, D.
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Gruendl, R.A.
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Gutierrez, G.
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Hinton, S.R.
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Hollowood, D.L.
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Honscheid, K.
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James, D.J.
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Kuehn, K.
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Lidman, C.
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Lima, M.
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Marshall, J.L.
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Mena-Fernández, J.
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Miquel, R.
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Myles, J.
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Ogando, R.L.C.
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Pieres, A.
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Malagón, A.A. Plazas
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Romer, A.K.
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Sanchez, E.
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Cid, D. Sanchez
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Santiago, B.
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Schubnell, M.
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Sevilla-Noarbe, I.
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Smith, M.
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Wiseman, P.
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Esteves, J.H., Pereira, M.E.S. and Soares-Santos, M. , et al. (2024) Copacabana: a probabilistic membership assignment method for galaxy clusters. Monthly Notices of the Royal Astronomical Society, 536 (1), 931-945. (doi:10.1093/mnras/stae2593).

Record type: Article

Abstract

Cosmological analyses using galaxy clusters in optical/near-infrared photometric surveys require robust characterization of their galaxy content. Precisely determining which galaxies belong to a cluster is crucial. In this paper, we present the COlor Probabilistic Assignment of Clusters And BAyesiaN Analysis (Copacabana) algorithm. Copacabana computes membership probabilities for all galaxies within an aperture centred on the cluster using photometric redshifts, colours, and projected radial probability density functions. We use simulations to validate Copacabana and we show that it achieves up to 89 per cent membership accuracy with a mild dependence on photometric redshift uncertainties and choice of aperture size. We find that the precision of the photometric redshifts has the largest impact on the determination of the membership probabilities followed by the choice of the cluster aperture size. We also quantify how much these uncertainties in the membership probabilities affect the stellar mass–cluster mass scaling relation, a relation that directly impacts cosmology. Using the sum of the stellar masses weighted by membership probabilities (⁠μ*) as the observable, we find that Copacabana can reach an accuracy of 0.06 dex in the measurement of the scaling relation at low redshift for a Legacy Survey of Space and Time type survey. These results indicate the potential of Copacabana and μ* to be used in cosmological analyses of optically selected clusters in the future.

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More information

Accepted/In Press date: 12 November 2024
e-pub ahead of print date: 26 November 2024
Published date: 11 December 2024
Keywords: astro-ph.CO, astro-ph.GA

Identifiers

Local EPrints ID: 497292
URI: http://eprints.soton.ac.uk/id/eprint/497292
ISSN: 1365-2966
PURE UUID: fd8ca438-b86b-4646-b972-ecfbe3e98340
ORCID for P. Wiseman: ORCID iD orcid.org/0000-0002-3073-1512

Catalogue record

Date deposited: 17 Jan 2025 17:47
Last modified: 22 Aug 2025 02:21

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Contributors

Author: J.H. Esteves
Author: M.E.S. Pereira
Author: M. Soares-Santos
Author: J. Annis
Author: A. Farahi
Author: F. Andrade-Oliveira
Author: P. Barchi
Author: A. Palmese
Author: H. Lin
Author: B. Welch
Author: H.-Y. Wu
Author: M. Aguena
Author: O. Alves D. Bacon
Author: S. Bocquet
Author: D. Brooks
Author: A. Carnero Rosell
Author: J. Carretero
Author: M. Costanzi
Author: L.N. da Costa
Author: J. De Vicente
Author: P. Doel
Author: S. Everett
Author: B. Flaugher
Author: J. Frieman
Author: J. García-Bellido
Author: D. Gruen
Author: R.A. Gruendl
Author: G. Gutierrez
Author: S.R. Hinton
Author: D.L. Hollowood
Author: K. Honscheid
Author: D.J. James
Author: K. Kuehn
Author: C. Lidman
Author: M. Lima
Author: J.L. Marshall
Author: J. Mena-Fernández
Author: R. Miquel
Author: J. Myles
Author: R.L.C. Ogando
Author: A. Pieres
Author: A.A. Plazas Malagón
Author: A.K. Romer
Author: E. Sanchez
Author: D. Sanchez Cid
Author: B. Santiago
Author: M. Schubnell
Author: I. Sevilla-Noarbe
Author: M. Smith
Author: P. Wiseman ORCID iD
Corporate Author: et al.

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