arXiv · 1702.03185
A model of interacting dark fluids tested with supernovae and Baryon Acoustic Oscillations data
Abstract
We compare supernovae and Baryon Acoustic Oscillations data to the predictions of a cosmological model of interacting dark matter and dark energy. This theoretical model can be derived from the effective field theory of Einstein-Cartan gravity with two scaling exponents $δ_G$ and $δ_Λ$, related to the interaction between dark matter and dark energy. We perform a $χ^2$ fit to the data to compare and contrast it with the standard $Λ$CDM model. We then explore the range of parameter of the model which gives a better $χ^2$ than the standard cosmological model. All those results lead to tight constraints on the scaling exponents of the model. Our conclusion is that this class of models, provides a decent alternative to the $Λ$CDM model.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Damien Bégué, Clément Stahl, She-Sheng Xue. 2019-02-01. A model of interacting dark fluids tested with supernovae and Baryon Acoustic Oscillations data. https://doi.org/10.1016/j.nuclphysb.2019.01.001
Cite the original work for its findings. Save a collection to share your selection of sources.