The XXL Survey IV. Mass-temperature relation of the bright cluster sample
Maggie Lieu, Graham P. Smith, Paul A. Giles, Felicia Ziparo, Ben J., Maughan, Jessica D\'emocl\`es, Florian Pacaud, Marguerite Pierre, Christophe, Adami, Yannick M. Bah\'e, Nicolas Clerc, Lucio Chiappetti, Dominique Eckert,, Stefano Ettori, S\'ebastien Lavoie, Jean-Paul Le Fevre

TL;DR
This study investigates the mass-temperature relation of galaxy clusters using weak-lensing measurements from the XXL survey, providing new insights into cluster scaling relations and their deviations from self-similarity.
Contribution
It presents the largest weak-lensing mass-temperature relation analysis for galaxy clusters, combining XXL data with literature to improve understanding of cluster scaling laws.
Findings
The slope of the mass-temperature relation is approximately 1.78 for XXL clusters.
The combined sample shows a slope of about 1.67, indicating deviation from self-similar models.
The intrinsic scatter is around 0.53, mainly due to disturbed clusters.
Abstract
The XXL survey is the largest survey carried out by XMM-Newton. Covering an area of 50deg, the survey contains galaxy clusters out to a redshift 2 and to an X-ray flux limit of . This paper is part of the first release of XXL results focussed on the bright cluster sample. We investigate the scaling relation between weak-lensing mass and X-ray temperature for the brightest clusters in XXL. The scaling relation is used to estimate the mass of all 100 clusters in XXL-100-GC. Based on a subsample of 38 objects that lie within the intersection of the northern XXL field and the publicly available CFHTLenS catalog, we derive the of each system with careful considerations of the systematics. The clusters lie at and span a range of . We combine our sample with 58 clusters from the literature,…
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