The effect of primordial non-Gaussianity on the skeleton of cosmic shear maps
arXiv:1103.5396 · doi:10.1111/j.1365-2966.2011.19260.x
Abstract
(abridged) We explore the imprints of deviations from Gaussian primordial density fluctuations on the skeleton of the large-scale matter distribution as mapped through cosmological weak lensing. We computed the skeleton length of simulated effective convergence maps covering sq. deg each, extracted from a suite of cosmological body runs with different levels of local primordial non-Gaussianity. The latter is expected to alter the structure formation process with respect to the fiducial Gaussian scenario, and thus to leave a signature on the cosmic web. We found that alterations of the initial conditions consistently modify both the cumulative and the differential skeleton length, although the effect is generically smaller than the cosmic variance and depends on the smoothing of the map prior to the skeleton computation. Nevertheless, the qualitative shape of these deviations is rather similar to their primordial counterparts, implying that skeleton statistics retain good memory of the initial conditions. We performed a statistical analysis in order to find out at what Confidence Level primordial non-Gaussianity could be constrained by the skeleton test on cosmic shear maps of the size we adopted. At 68.3% Confidence Level we found an error on the measured level of primordial non-Gaussianity of , while at 90% Confidence Level it is of . While these values by themselves are not competitive with the current constraints, weak lensing maps larger than those used here would have a smaller field-to-field variance, and thus would likely lead to tighter constraints. A rough estimate indicates a few tens at 68.3% Confidence Level for an all-sky weak lensing survey.
11 pages, 9 figures. Accepted for publication on MNRAS
References in corpus (15)
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Primordial Non-Gaussianities from Inflation Models
- Effects of Scale-Dependent Non-Gaussianity on Cosmological Structures
- The bispectrum of galaxies from high-redshift galaxy surveys: primordial non-Gaussianity and non-linear galaxy bias
- Primordial non-gaussianity, statistics of collapsed objects, and the Integrated Sachs-Wolfe effect
- Primordial non-Gaussianity: large-scale structure signature in the perturbative bias model
- Primordial non-Gaussianity, scale-dependent bias, and the bispectrum of galaxies
- 21-cm Background Anisotropies Can Discern Primordial Non-Gaussianity
- The bispectrum of redshifted 21-cm fluctuations from the dark ages
- N-body simulations with generic non-Gaussian initial conditions I: Power Spectrum and halo mass function
- Evolution of Massive Haloes in non-Gaussian Scenarios
- Primordial non-Gaussianity from two curvaton decays
- The clustering of galaxies and galaxy clusters: constraints on primordial non-Gaussianity from future wide-field surveys
- Topological Defects in Gravitational Lensing Shear Fields
- The primordial non-Gaussianity of local type (f_NL) in the WMAP 5-year data: the length distribution of CMB skeleton
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