Papers › CHEX-MATE: exploring the kinematical properties of Planck galaxy clusters

CHEX-MATE: exploring the kinematical properties of Planck galaxy clusters

6 May 2025arXiv:2505.03708links table onlyarchive 2025-07-28

Lorenzo Pizzuti, Rafael Barrena, Mauro Sereno, Alina Streblyanska, Antonio Ferragamo, Sophie Maurogordato, Alberto Cappi, Stefano Ettori, Gabriel W. Pratt, Gianluca Castignani, Megan Donahue, Dominique Eckert, Fabio Gastaldello, Raphael Gavazzi, Christopher P. Haines, Scott T. Kay, Lorenzo Lovisari, Ben J. Maughan, Etienne Pointecouteau, Elena Rasia, Mario Radovich, Jack Sayers

The archive published only this paper's code-link row. Authors, date and abstract are from arXiv's metadata (CC0), read from the Kaggle arXiv metadata snapshot of 2026-09-12 where its title matched the archive's; the title is the archive's.

We analyse the kinematical properties of the CHEX-MATE (Cluster HEritage project with XMM-Newton - Mass Assembly and Thermodynamics at the Endpoint of structure formation) galaxy cluster sample. [...] We derive cluster mass profiles for 75 clusters using the \textsc{MG-MAMPOSSt} procedure, which recovers the gravitational potential and the anisotropy profiles from line-of-sight velocities and projected positions of galaxy members. The standard NFW and the Burkert models with flatter cores than NFW both adequately fit the kinematic data, with only marginal statistical preference for one model over the other. An estimation of the mass bias (1-B₁) = M^(SZ)₅₀₀/Mᴹ₅₀₀ is performed from the comparison with SZ-X-ray-calibrated mass estimates, resulting in a value of 0.54 ±0.11 when four evidently disturbed clusters are removed from the sample. We assess the dynamical state of the clusters by inferring the Anderson-Darling coefficient (A²) and the fraction of galaxies in substructures (f_(sub)). Except for a few cases, we found relatively low values for A², suggesting that CHEX-MATE clusters are not too far from relaxation. Moreover, no significant trends emerge among A², f_(sub) and the difference between the log-masses estimated by \textsc{MG-MAMPOSSt} and by SZ-X-ray. We study the concentration-mass relation for the sample; despite the large scatter, we observe signs of an increasing trend for large-mass clusters, in agreement with recent theoretical expectations. Finally, the analysis of radial anisotropy profiles of member galaxies - stacked in five bins of mass and redshift - reveals that orbits tend to be isotropic at the center and more radial towards the edge, as already found in previous studies. A slight trend of increasing radial orbits at r₂₀₀ is observed in clusters with larger velocity dispersion

PaperPDFCode

Code

josegit88/milads officialmentioned in paper report

Repository list and official/mentioned flags are the archive's, frozen 2025-07-28. Reachability, where shown, is from one Syntology probe window (2026-09-16 to 2026-09-18); repositories not probed show nothing. GitHub stars are not tracked.

Code Syntology ran Syntology

Not run by Syntology. Nothing on this page verifies that the listed code works.

Results from the paper archive 2025-07-28

No leaderboard rows for this paper in the archive.

Report a problem or propose a change · a person checks every report against the paper or source before anything changes; decisions are listed on /corrections