activity
20092014
most citedCFHTLenS: Cosmological constraints from a combination of cosmic shear two-point and three-point correlations

178 citations · 178 across the 1 of their papers we have counts for

collaborators

12 papers

astro-ph.CO2014★ 178 cited

CFHTLenS: Cosmological constraints from a combination of cosmic shear two-point and three-point correlations

Liping Fu, Martin Kilbinger, Thomas Erben +17

Higher-order, non-Gaussian aspects of the large-scale structure carry valuable information on structure formation and cosmology, which is complementary to second-order statistics.…

astro-ph.CO2013

CFHTLenS tomographic weak lensing cosmological parameter constraints: Mitigating the impact of intrinsic galaxy alignments

Catherine Heymans, Emma Grocutt, Alan Heavens +21

We present a finely-binned tomographic weak lensing analysis of the Canada-France-Hawaii Telescope Lensing Survey, CFHTLenS, mitigating contamination to the signal from the presenc…

astro-ph.CO2013

CFHTLenS: Mapping the Large Scale Structure with Gravitational Lensing

Ludovic Van Waerbeke, Jonathan Benjamin, Thomas Erben +18

We present a quantitative analysis of the largest contiguous maps of projected mass density obtained from gravitational lensing shear. We use data from the 154 deg2 covered by the…

astro-ph.CO2013

CFHTLenS: Combined probe cosmological model comparison using 2D weak gravitational lensing

Martin Kilbinger, Liping Fu, Catherine Heymans +20

We present cosmological constraints from 2D weak gravitational lensing by the large-scale structure in the Canada-France Hawaii Telescope Lensing Survey (CFHTLenS) which spans 154…

astro-ph.CO2012

CFHTLenS tomographic weak lensing: Quantifying accurate redshift distributions

Jonathan Benjamin, Ludovic Van Waerbeke, Catherine Heymans +18

The Canada-France-Hawaii Telescope Lensing Survey (CFHTLenS) comprises deep multi-colour (u*g'r'i'z') photometry spanning 154 square degrees, with accurate photometric redshifts an…

astro-ph.CO2012

CFHTLenS: Testing the Laws of Gravity with Tomographic Weak Lensing and Redshift Space Distortions

Fergus Simpson, Catherine Heymans, David Parkinson +20

Dark energy may be the first sign of new fundamental physics in the Universe, taking either a physical form or revealing a correction to Einsteinian gravity. Weak gravitational len…