Strong lensing in the MareNostrum Universe II: scaling relations and optical depths
arXiv:1007.1551 · doi:10.1051/0004-6361/201014962
Abstract
The strong lensing events that are observed in compact clusters of galaxies can, both statistically and individually, return important clues about the structural properties of the most massive structures in the Universe. Substantial work is ongoing in order to understand the degree of similarity between the lensing cluster population and the population of clusters as a whole, with members of the former being likely more massive, compact, and substructured than members of the latter. In this work we exploit synthetic clusters extracted from the {\sc MareNostrum Universe} cosmological simulation in order to estimate the correlation between the strong lensing efficiency and other bulk properties of lensing clusters, such as the virial mass and the bolometric X-ray luminosity. We found that a positive correlation exist between all these quantities, with the substantial scatter being smaller for the luminosity-cross section relation. We additionally used the relation between the lensing efficiency and the virial mass in order to construct a synthetic optical depth that agrees well with the true one, while being extremely faster to be evaluated. We finally estimated what fraction of the total giant arc abundance is recovered when galaxy clusters are selected according to their dynamical activity or their X-ray luminosity. Our results show that there is a high probability for high-redshift strong lensing clusters to be substantially far away from dynamical equilibrium, and that of the total amount of giant arcs are lost if looking only at very X-ray luminous objects.
15 pages, 10 figures. Accepted by A&A
References in corpus (18)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Virial Scaling of Massive Dark Matter Halos: Why Clusters Prefer a High Normalization Cosmology
- Effects of Scale-Dependent Non-Gaussianity on Cosmological Structures
- Strong Lensing in Abell 1703: Constraints on the Slope of the Inner Dark Matter Distribution
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- Shape, spin and baryon fraction of clusters in the MareNostrum Universe
- Strong lensing in the MareNostrum Universe: biases in the cluster lens population
- The impact of gas physics on strong cluster lensing
- Arcfinder: An algorithm for the automatic detection of gravitational arcs
- Arc sensitivity to cluster ellipticity, asymmetries and substructures
- Chandra X-ray Observations of the 0.6 < z < 1.1 Red-Sequence Cluster Survey Sample
- Mass Function of Rich Galaxy Clusters and Its Constraint on sigma_8
- Strong lensing statistics and the power spectrum normalisation
- Spectroscopy of moderately high-redshift RCS-1 clusters
- Effects of the halo concentration distribution on strong-lensing optical depth and X-ray emission
- Selection effects on X-ray and strong-lensing clusters in various cosmologies
- A Multiwavelength Analysis of the Strong Lensing Cluster RCS 022434-0002.5 at z=0.778
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- Comparison of an X-ray selected sample of massive lensing clusters with the MareNostrum Universe LCDM simulation
- Arc Statistics
- MOKA: a new tool for Strong Lensing Studies
- A highly elongated prominent lens at z=0.87: first strong lensing analysis of El Gordo
- The Redshift Distribution of Giant Arcs in the Sloan Giant Arcs Survey
- Broadband Photometry of 105 Giant Arcs: Redshift Constraints and Implications for Giant Arc Statistics
- PICS: Simulations of Strong Gravitational Lensing in Galaxy Clusters
- Lensed arc statistics: comparison of Millennium-simulation galaxy clusters to Hubble Space Telescope observations of an X-ray selected sample
- RELICS: High-Resolution Constraints on the Inner Mass Distribution of the z=0.83 Merging Cluster RXJ0152.7-1357 from strong lensing
- The importance of secondary halos for strong lensing in massive galaxy clusters across redshift
- The effects of primordial non-Gaussianity on giant-arc statistics
- Detection of Strongly Lensed Arcs in Galaxy Clusters with Transformers