Constraining Cosmology with High Convergence Regions in Weak Lensing Surveys
arXiv:0809.4052 · doi:10.1088/0004-637X/691/1/547
Abstract
We propose to use a simple observable, the fractional area of "hot spots" in weak gravitational lensing mass maps which are detected with high significance, to determine background cosmological parameters. Because these high-convergence regions are directly related to the physical nonlinear structures of the universe, they derive cosmological information mainly from the nonlinear regime of density fluctuations. We show that in combination with future cosmic microwave background anisotropy measurements, this method can place constraints on cosmological parameters that are comparable to those from the redshift distribution of galaxy cluster abundances. The main advantage of the statistic proposed in this paper is that projection effects, normally the main source of uncertainty when determining the presence and the mass of a galaxy cluster, here serve as a source of information.
14 pages, 4 figures, accepted for publication in Astrophysical Journal
References in corpus (5)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Very weak lensing in the CFHTLS Wide: Cosmology from cosmic shear in the linear regime
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Self Calibration of Tomographic Weak Lensing for the Physics of Baryons to Constrain Dark Energy
- Gravitational Wave Sirens as a Triple Probe of Dark Energy
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