The redshift evolution of massive galaxy clusters in the MACSIS simulations
arXiv:1607.04569 · doi:10.1093/mnras/stw2722
Abstract
We present the MAssive ClusterS and Intercluster Structures (MACSIS) project, a suite of 390 clusters simulated with baryonic physics that yields realistic massive galaxy clusters capable of matching a wide range of observed properties. MACSIS extends the recent BAHAMAS simulation to higher masses, enabling robust predictions for the redshift evolution of cluster properties and an assessment of the effect of selecting only the hottest systems. We study the observable-mass scaling relations and the X-ray luminosity-temperature relation over the complete observed cluster mass range. As expected, we find the slope of these scaling relations and the evolution of their normalization with redshift departs significantly from the self-similar predictions. However, for a sample of hot clusters with core-excised temperatures the normalization and slope of the observable-mass relations and their evolution are significantly closer to self-similar. The exception is the temperature-mass relation, for which the increased importance of non-thermal pressure support and biased X-ray temperatures leads to a greater departure from self-similarity in the hottest systems. As a consequence, these also affect the slope and evolution of the normalization in the luminosity-temperature relation. The median hot gas profiles show good agreement with observational data at and , with their evolution again departing significantly from the self-similar prediction. However, selecting a hot sample of clusters yields profiles that evolve significantly closer to the self-similar prediction. In conclusion, our results show that understanding the selection function is vital for robust calibration of cluster properties with mass and redshift.
24 pages, 15 figures, MNRAS accepted version
References in corpus (15)
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Transients from Initial Conditions in Cosmological Simulations
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- eROSITA Science Book: Mapping the Structure of the Energetic Universe
- Images, structural properties and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3
- Calibration of the galaxy cluster M_500-Y_X relation with XMM-Newton
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- The baryon fraction of LambdaCDM haloes
- The Redshift Evolution of the Mean Temperature, Pressure, and Entropy Profiles in 80 SPT-Selected Galaxy Clusters
- Cosmology and Astrophysics from Relaxed Galaxy Clusters I: Sample Selection
- The impact of baryons on massive galaxy clusters: halo structure and cluster mass estimates
- Cosmological simulations of galaxy clusters with feedback from active galactic nuclei: profiles and scaling relations
- Bias from gas inhomogeneities in the pressure profiles as measured from X-ray and SZ observations
- Effects of Quasar Feedback in Galaxy Groups
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