Dark Energy Survey Year 1 Results: Constraints on Extended Cosmological Models from Galaxy Clustering and Weak Lensing
DES Collaboration: T. M. C. Abbott, F. B. Abdalla, S. Avila, M., Banerji, E. Baxter, K. Bechtol, M. R. Becker, E. Bertin, J. Blazek, S. L., Bridle, D. Brooks, D. Brout, D. L. Burke, A. Campos, A. Carnero Rosell, M., Carrasco Kind, J. Carretero, F. J. Castander, R. Cawthon

TL;DR
This paper uses DES Year 1 data combined with external datasets to constrain extended cosmological models, finding results consistent with standard cosmology and no evidence for deviations such as curvature, extra relativistic species, or modified gravity.
Contribution
First comprehensive analysis of extended cosmological models using DES Y1 galaxy clustering and weak lensing data combined with external measurements.
Findings
Constraints on curvature and relativistic species are dominated by external data.
No evidence found for time variation in dark energy equation of state.
Results are consistent with General Relativity and standard cosmological model.
Abstract
We present constraints on extensions of the minimal cosmological models dominated by dark matter and dark energy, CDM and CDM, by using a combined analysis of galaxy clustering and weak gravitational lensing from the first-year data of the Dark Energy Survey (DES Y1) in combination with external data. We consider four extensions of the minimal dark energy-dominated scenarios: 1) nonzero curvature , 2) number of relativistic species different from the standard value of 3.046, 3) time-varying equation-of-state of dark energy described by the parameters and (alternatively quoted by the values at the pivot redshift, , and ), and 4) modified gravity described by the parameters and that modify the metric potentials. We also consider external information from Planck CMB measurements; BAO measurements from SDSS, 6dF,…
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