A Consistent Approach to Falsifying Lambda-CDM with Rare Galaxy Clusters
arXiv:1210.4369 · doi:10.1088/1475-7516/2013/07/022
Abstract
We consider methods with which to answer the question "is any observed galaxy cluster too unusual for Lambda-CDM?" After emphasising that many previous attempts to answer this question will overestimate the confidence level at which Lambda-CDM can be ruled out, we outline a consistent approach to these rare clusters, which allows the question to be answered. We define three statistical measures, each of which are sensitive to changes in cluster populations arising from different modifications to the cosmological model. We also use these properties to define the 'equivalent mass at redshift zero' for a cluster --- the mass of an equally unusual cluster today. This quantity is independent of the observational survey in which the cluster was found, which makes it an ideal proxy for ranking the relative unusualness of clusters detected by different surveys. These methods are then used on a comprehensive sample of observed galaxy clusters and we confirm that all are less than 2-sigma deviations from the Lambda-CDM expectation. Whereas we have only applied our method to galaxy clusters, it is applicable to any isolated, collapsed, halo. As motivation for future surveys, we also calculate where in the mass redshift plane the rarest halo is most likely to be found, giving information as to which objects might be the most fruitful in the search for new physics.
18 pages, 6 figures, updated to fix dead url (text unchanged). Code for calculating rareness and equivalent mass at z=0 available https://bitbucket.org/itrharrison/hh13-cluster-rareness/
References in corpus (6)
- Non-linear Evolution of f(R) Cosmologies III: Halo Statistics
- Simultaneous Falsification of LCDM and Quintessence with Massive, Distant Clusters
- The Atacama Cosmology Telescope: Physical Properties of Sunyaev-Zel'dovich Effect Clusters on the Celestial Equator
- Implications of multiple high-redshift galaxy clusters
- Quantifying the rareness of extreme galaxy clusters
- Cl 1103.7-1245 at z=0.96: the highest redshift galaxy cluster in the EDisCS survey
Cited by in corpus (19)
- The XXL Survey: I. Scientific motivations - XMM-Newton observing plan - Follow-up observations and simulation programme
- Galaxy growth in a massive halo in the first billion years of cosmic history
- Dusty Starbursts Masquerading as Ultra-high Redshift Galaxies in JWST CEERS Observations
- Weighing "El Gordo" with a Precision Scale: Hubble Space Telescope Weak-lensing Analysis of the Merging Galaxy Cluster ACT-CL J0102-4915 at z=0.87
- CLASH: Complete Lensing Analysis of the Largest Cosmic Lens MACS J0717.5+3745 and Surrounding Structures
- Physical Characterization of an Unlensed Dusty Star-Forming Galaxy at
- Cosmology from the Thermal Sunyaev-Zel'dovich Power Spectrum: Primordial non-Gaussianity and Massive Neutrinos
- Mapping Obscuration to Reionization with ALMA (MORA): 2mm Efficiently Selects the Highest-Redshift Obscured Galaxies
- Emergence of an Ultra-Red Ultra-Massive Galaxy Cluster Core at
- The XXL Survey V: Detection of the Sunyaev-Zel'dovich effect of the Redshift 1.9 Galaxy Cluster XLSSU J021744.1-034536 with CARMA
- Cluster-Void Degeneracy Breaking: Dark Energy, Planck and the Largest Cluster & Void
- Spectroscopic confirmation of a mature galaxy cluster at redshift two
- Comprehensive Gas Characterization of a Protocluster: A Cluster Core Caught in the Beginning of Virialization?
- COSMOS2020: Identification of High-z Protocluster Candidates in COSMOS
- On the Significance of Rare Objects at High Redshift: The Impact of Cosmic Variance
- Constraining the Mass of the Emerging Galaxy Cluster SpARCS1049+56 at z=1.71 with Infrared Weak Lensing
- The infrared-luminous progenitors of high-z quasars
- X-ray cluster cosmology
- X-ray characterisation of the massive galaxy clusterClG-J104803.7+313843 at z=0.76 with XMM-Newton