English

KiDS-450: Cosmological parameter constraints from tomographic weak gravitational lensing

Cosmology and Nongalactic Astrophysics 2016-12-21 v2

Abstract

We present cosmological parameter constraints from a tomographic weak gravitational lensing analysis of ~450deg2^2 of imaging data from the Kilo Degree Survey (KiDS). For a flat Λ\LambdaCDM cosmology with a prior on H0H_0 that encompasses the most recent direct measurements, we find S8σ8Ωm/0.3=0.745±0.039S_8\equiv\sigma_8\sqrt{\Omega_{\rm m}/0.3}=0.745\pm0.039. This result is in good agreement with other low redshift probes of large scale structure, including recent cosmic shear results, along with pre-Planck cosmic microwave background constraints. A 2.32.3-σ\sigma tension in S8S_8 and `substantial discordance' in the full parameter space is found with respect to the Planck 2015 results. We use shear measurements for nearly 15 million galaxies, determined with a new improved `self-calibrating' version of lenslensfit validated using an extensive suite of image simulations. Four-band ugriugri photometric redshifts are calibrated directly with deep spectroscopic surveys. The redshift calibration is confirmed using two independent techniques based on angular cross-correlations and the properties of the photometric redshift probability distributions. Our covariance matrix is determined using an analytical approach, verified numerically with large mock galaxy catalogues. We account for uncertainties in the modelling of intrinsic galaxy alignments and the impact of baryon feedback on the shape of the non-linear matter power spectrum, in addition to the small residual uncertainties in the shear and redshift calibration. The cosmology analysis was performed blind. Our high-level data products, including shear correlation functions, covariance matrices, redshift distributions, and Monte Carlo Markov Chains are available at http://kids.strw.leidenuniv.nl.

Keywords

Cite

@article{arxiv.1606.05338,
  title  = {KiDS-450: Cosmological parameter constraints from tomographic weak gravitational lensing},
  author = {H. Hildebrandt and M. Viola and C. Heymans and S. Joudaki and K. Kuijken and C. Blake and T. Erben and B. Joachimi and D. Klaes and L. Miller and C. B. Morrison and R. Nakajima and G. Verdoes Kleijn and A. Amon and A. Choi and G. Covone and J. T. A. de Jong and A. Dvornik and I. Fenech Conti and A. Grado and J. Harnois-Déraps and R. Herbonnet and H. Hoekstra and F. Köhlinger and J. McFarland and A. Mead and J. Merten and N. Napolitano and J. A. Peacock and M. Radovich and P. Schneider and P. Simon and E. A. Valentijn and J. L. van den Busch and E. van Uitert and L. Van Waerbeke},
  journal= {arXiv preprint arXiv:1606.05338},
  year   = {2016}
}

Comments

49 pages, 34 figures, 9 tables, accepted for publication in MNRAS; data products available at http://kids.strw.leidenuniv.nl/