Scaling Rrelation in two situations of extreme mergers
arXiv:1012.4027 · doi:10.1088/0004-637X/729/1/45
Abstract
Clusters of galaxies are known to be dynamically active systems, yet X-ray studies of the low redshift population exhibit tight scaling laws. In this work, we extend previous studies of this apparent paradox using numerical simulations of two extreme merger cases, one is a high Mach number (above 2.5) satellite merger similar to the "bullet cluster" and the other a merger of nearly equal mass progenitors. Creating X-ray images densely sampled in time, we construct TX, Mgas, and YX measures within R500 and compare to the calibrations of Kravtsov et al. (2006). We find that these extreme merger cases respect the scaling relations, for both intrinsic measures and for measures derived from appropriately masked, synthetic Chandra X-ray images. The masking procedure plays a critical role in the X-ray temperature calculation while it is irrelevant in the X-ray gas mass derivation. Mis-centering up to 100 kpc does not influence the result. The observationally determined radius R500 might conduce to systematic shifts in Mgas, and YX which increase the total mass scatter.
9 pages, 7 figures, accepted in ApJ
References in corpus (12)
- A direct empirical proof of the existence of dark matter
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Chemical enrichment of galaxy clusters from hydrodynamical simulations
- Virial Scaling of Massive Dark Matter Halos: Why Clusters Prefer a High Normalization Cosmology
- Systematics in the X-ray Cluster Mass Estimators
- Revealing the properties of dark matter in the merging cluster MACSJ0025.4-1222
- On the efficiency and reliability of cluster mass estimates based on member galaxies
- Total mass biases in X-ray galaxy clusters
- The impact of mergers on relaxed X-ray clusters - II. Effects on global X-ray and SZ properties and their scaling relations
- X-MAS2: Study Systematics on the ICM Metallicity Measurements
- The Impact of Galaxy Cluster Mergers on Cosmological Parameter Estimation from Surveys of the Sunyaev-Zel'dovich Effect
- Nature versus Nurture: The curved spine of the galaxy cluster X-ray luminosity -- temperature relation
Cited by in corpus (29)
- Formation of Galaxy Clusters
- Scaling relations for galaxy clusters in the Millennium-XXL simulation
- Cosmological Constraints from Sunyaev-Zel'dovich-Selected Clusters with X-ray Observations in the First 178 Square Degrees of the South Pole Telescope Survey
- On the Cluster Physics of Sunyaev-Zel'dovich Surveys I: The Influence of Feedback, Non-thermal Pressure and Cluster Shapes on Y-M Scaling Relations
- Lensing and X-ray mass estimates of clusters (SIMULATION)
- Non-thermal pressure support in X-COP galaxy clusters
- Weighing the Giants V: Galaxy Cluster Scaling Relations
- The MUSIC of CLASH: predictions on the concentration-mass relation
- Cosmology and Astrophysics from Relaxed Galaxy Clusters I: Sample Selection
- The XXL Survey. XIII. Baryon content of the bright cluster sample
- Cosmological hydrodynamical simulations of galaxy clusters: X-ray scaling relations and their evolution
- Evolution of the Merger Induced Hydrostatic Mass Bias in Galaxy Clusters
- X-ray mass proxies from hydrodynamic simulations of galaxy clusters (paper I)
- Hubble Frontier Fields: The Geometry and Dynamics of the Massive Galaxy Cluster Merger MACSJ0416.1-2403
- Rhapsody-G simulations I: the cool cores, hot gas and stellar content of massive galaxy clusters
- On Dark Peaks and Missing Mass: A Weak Lensing Mass Reconstruction of the Merging Cluster System Abell 520
- Forming intracluster gas in a galaxy protocluster at a redshift of 2.16
- The Hidden Fortress: Structure and substructure of the complex strong lensing cluster SDSS J1029+2623
- Merger induced scatter and bias in the cluster mass - Sunyaev-Zeldovich effect scaling relation
- Weak Lensing Results of the Merging Cluster A1758
- A Comparative Study of Local Galaxy Clusters: II: X-ray and SZ Scaling Relations
- The generalized scaling relations for X-ray galaxy clusters: the most powerful mass proxy
- Impact of Systematics on SZ-Optical Scaling Relations
- Discovery of a new fundamental plane dictating galaxy cluster evolution from gravitational lensing
- Dark matter-baryons separation at the lowest mass scale: the Bullet Group
- A good mass proxy for galaxy clusters with XMM-Newton
- The Three Hundred Project: dissecting the fundamental plane of galaxy clusters up to
- An X-ray-Emitting Proto-Cluster at Reveals Rapid Structure Growth
- Timing the last major merger of galaxy clusters with large halo sparsity