Core Cosmology Library: Precision Cosmological Predictions for LSST

Publication date

2018-12-14

Authors

Chisari, ElisaISNI 0000000492852736
Alonso, David
Krause, Elisabeth
Leonard, C. Danielle
Bull, Philip
Neveu, Jérémy
Villarreal, Antonio
Singh, Sukhdeep
McClintock, Thomas
Ellison, John

Editors

Advisors

Supervisors

Document Type

/dk/atira/pure/researchoutput/researchoutputtypes/workingpaper/preprint
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License

Abstract

The Core Cosmology Library (CCL) provides routines to compute basic cosmological observables to a high degree of accuracy, which have been verified with an extensive suite of validation tests. Predictions are provided for many cosmological quantities, including distances, angular power spectra, correlation functions, halo bias and the halo mass function through state-of-the-art modeling prescriptions available in the literature. Fiducial specifications for the expected galaxy distributions for the Large Synoptic Survey Telescope (LSST) are also included, together with the capability of computing redshift distributions for a user-defined photometric redshift model. A rigorous validation procedure, based on comparisons between CCL and independent software packages, allows us to establish a well-defined numerical accuracy for each predicted quantity. As a result, predictions for correlation functions of galaxy clustering, galaxy-galaxy lensing and cosmic shear are demonstrated to be within a fraction of the expected statistical uncertainty of the observables for the models and in the range of scales of interest to LSST. CCL is an open source software package written in C, with a python interface and publicly available at https://github.com/LSSTDESC/CCL.

Keywords

astro-ph.CO, astro-ph.IM

Citation

Chisari, N E, Alonso, D, Krause, E, Leonard, C D, Bull, P, Neveu, J, Villarreal, A, Singh, S, McClintock, T, Ellison, J, Du, Z, Zuntz, J, Mead, A, Joudaki, S, Lorenz, C S, Troester, T, Sanchez, J, Lanusse, F, Ishak, M, Hlozek, R, Blazek, J, Campagne, J-E, Almoubayyed, H, Eifler, T, Kirby, M, Kirkby, D, Plaszczynski, S, Slosar, A, Vrastil, M & Wagoner, E L 2018 'Core Cosmology Library : Precision Cosmological Predictions for LSST' arXiv, pp. 1-38. https://doi.org/10.48550/arXiv.1812.05995