The XXL Survey: XXXVIII. Scatters and correlations of X-ray proxies in the bright XXL cluster sample
arXiv:1906.10455 · doi:10.1051/0004-6361/201628521
Abstract
Context. Scaling relations between cluster properties embody the formation and evolution of cosmic structure. Intrinsic scatters and correlations between X-ray properties are determined from merger history, baryonic processes, and dynamical state. Aims. We look for an unbiased measurement of the scatter covariance matrix between the three main X-ray observable quantities attainable in large X-ray surveys -- temperature, luminosity, and gas mass. This also gives us the cluster property with the lowest conditional intrinsic scatter at fixed mass. Methods. Intrinsic scatters and correlations can be measured under the assumption that the observable properties of the intra-cluster medium hosted in clusters are log-normally distributed around power-law scaling relations. The proposed method is self-consistent, based on minimal assumptions, and requires neither the external calibration by weak lensing, dynamical, or hydrostatic masses nor the knowledge of the mass completeness. Results. We analyzed the 100 brightest clusters detected in the XXL Survey and their X-ray properties measured within a fixed radius of 300 kpc. The gas mass is the less scattered proxy (~8%). The temperature (~20%) is intrinsically less scattered than the luminosity (~30%) but it is measured with a larger observational uncertainty. We found some evidence that gas mass, temperature and luminosity are positively correlated. Time-evolutions are in agreement with the self-similar scenario, but the luminosity-temperature and the gas mass-temperature relations are steeper. Conclusions. Positive correlations between X-ray properties can be determined by the dynamical state and the merger history of the halos. The slopes of the scaling relations are affected by radiative processes.
19 pages, in press on Astronomy and Astrophysics; v02: updated XXL series number
References in corpus (18)
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Galaxy Clusters Discovered via the Sunyaev-Zel'dovich Effect in the 2500-square-degree SPT-SZ survey
- Weighing the Giants IV: Cosmology and Neutrino Mass
- Scaling Properties of a Complete X-ray Selected Galaxy Group Sample
- Calibration of the galaxy cluster M_500-Y_X relation with XMM-Newton
- The Lx-Yx Relation: Using Galaxy Cluster X-Ray Luminosity as a Robust, Low Scatter Mass Proxy
- The XXL Survey XX: The 365 cluster catalogue
- AMICO galaxy clusters in KiDS-DR3: sample properties and selection function
- The XXL Survey XXV. Cosmological analysis of the C1 cluster number counts
- A Model for Multi-property Galaxy Cluster Statistics
- The physics inside the scaling relations for X-ray galaxy clusters: gas clumpiness, gas mass fraction and slope of the pressure profile
- CLUMP-3D. Testing CDM with galaxy cluster shapes
- The XXL Survey: XVI. The clustering of X-ray selected galaxy clusters at z~0.3
- CoMaLit - II. The scaling relation between mass and Sunyaev-Zel'dovich signal for Planck selected galaxy clusters
- Nature versus Nurture: The curved spine of the galaxy cluster X-ray luminosity -- temperature relation
- The insignificant evolution of the richness-mass relation of galaxy clusters
- On the deprojection of clusters of galaxies combining X-ray, Sunyaev-Zeldovich temperature decrement and gravitational lensing maps
- A New Interpretation of the Mass-Temperature Relation and Mass Calibration of Galaxy Clusters Based on the Fundamental Plane
Cited by in corpus (10)
- X-ray scaling relations for a representative sample of Planck selected clusters observed with XMM-Newton
- XXL Survey groups and clusters in the Hyper Suprime-Cam Survey. Scaling relations between X-ray properties and weak lensing mass
- The thermalisation of massive galaxy clusters
- Understanding X-ray and optical selection of galaxy clusters: A comparison of the XXL and CAMIRA cluster catalogues obtained in the common XXL-HSC SSP area
- CoMaLit -- VI. Intrinsic scatter in stacked relations. The weak lensing AMICO galaxy clusters in KiDS-DR3
- Scaling relations of X-ray Luminous Clusters in the Hyper Suprime-Cam Subaru Strategic Program Field
- Galaxy cluster optical mass proxies from probabilistic memberships
- Scaling relations of clusters and groups, and their evolution
- Modelling the selection of galaxy groups with end to end simulations
- X-ray analysis of the Planck-detected triplet-cluster system PLCK G334.8-38