We present a study on the bias of hydrostatic masses with respect to lensing mass estimates for a sample of 53 clusters in a redshift range between z = 0.05 and 1.07. The M-500 mass for each cluster was inferred from X-ray and lensing data, without using a priori observable-mass scaling relations. Cluster masses of our reference analysis were reconstructed homogeneously and we assess the systematic dispersion of those homogeneous masses with respect to other published mass estimates. We obtain an hydrostatic-to-lensing mass bias of (1 - b) = 0.74(-0.07)(+0.08) and no significant evidence of evolution with redshift.
Estimation of the hydrostatic-to-lensing mass bias from resolved cluster masses / Muñoz-Echeverría, M; Macías-Pérez, Jf; Pratt, Gw; Pointecouteau, E; Bartalucci, I; De Petris, M; Ferragamo, A; Hanser, C; Kéruzoré, F; Mayet, F; Moyer-Anin, A; Paliwal, A; Perotto, L; Yepes, G. - In: EPJ WEB OF CONFERENCES. - ISSN 2100-014X. - 293:(2024), pp. 1-6. (Intervento presentato al convegno Observing the Universe at mm wavelenghts, mm Universe 2023 tenutosi a Grenoble, France) [10.1051/epjconf/202429300033].
Estimation of the hydrostatic-to-lensing mass bias from resolved cluster masses
De Petris, M;Ferragamo, A;Paliwal, A;
2024
Abstract
We present a study on the bias of hydrostatic masses with respect to lensing mass estimates for a sample of 53 clusters in a redshift range between z = 0.05 and 1.07. The M-500 mass for each cluster was inferred from X-ray and lensing data, without using a priori observable-mass scaling relations. Cluster masses of our reference analysis were reconstructed homogeneously and we assess the systematic dispersion of those homogeneous masses with respect to other published mass estimates. We obtain an hydrostatic-to-lensing mass bias of (1 - b) = 0.74(-0.07)(+0.08) and no significant evidence of evolution with redshift.| File | Dimensione | Formato | |
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