Simultaneous Falsification of LCDM and Quintessence with Massive, Distant Clusters
arXiv:1011.0004 · doi:10.1103/PhysRevD.83.023015
Abstract
Observation of even a single massive cluster, especially at high redshift, can falsify the standard cosmological framework consisting of a cosmological constant and cold dark matter (LCDM) with Gaussian initial conditions by exposing an inconsistency between the well-measured expansion history and the growth of structure it predicts. Through a likelihood analysis of current cosmological data that constrain the expansion history, we show that the LCDM upper limits on the expected number of massive, distant clusters are nearly identical to limits predicted by all quintessence models where dark energy is a minimally coupled scalar field with a canonical kinetic term. We provide convenient fitting formulas for the confidence level at which the observation of a cluster of mass M at redshift z can falsify LCDM and quintessence given cosmological parameter uncertainties and sample variance, as well as for the expected number of such clusters in the light cone and the Eddington bias factor that must be applied to observed masses. By our conservative confidence criteria, which equivalently require masses 3 times larger than typically expected in surveys of a few hundred square degrees, none of the presently known clusters falsify these models. Various systematic errors, including uncertainties in the form of the mass function and differences between supernova light curve fitters, typically shift the exclusion curves by less than 10% in mass, making current statistical and systematic uncertainties in cluster mass determination the most critical factor in assessing falsification of LCDM and quintessence.
16 pages, 11 figures; minor changes to text and references to match published version (results unchanged)
References in corpus (18)
- New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1: Narrowing Constraints on the Early Behavior of Dark Energy
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- Measuring the Baryon Acoustic Oscillation scale using the SDSS and 2dFGRS
- Non-linear Evolution of f(R) Cosmologies III: Halo Statistics
- Crossing the Phantom Divide with Parameterized Post-Friedmann Dark Energy
- Optimal limits on f_{NL}^{local} from WMAP 5-year data
- Primordial non-gaussianity, statistics of collapsed objects, and the Integrated Sachs-Wolfe effect
- Signature of the interaction between dark energy and dark matter in galaxy clusters
- The X-Ray Luminosity--Mass Relation for Local Clusters of Galaxies
- The Structure of Halos: Implications for Group and Cluster Cosmology
- Confronting Dark Energy Models using Galaxy Cluster Number Counts
- Cluster abundances and S-Z power spectra: effects of non-Gaussianity and early dark energy
- The signature of dark energy perturbations in galaxy cluster surveys
- CMB Constraints on Principal Components of the Inflaton Potential