Constraining constant and tomographic coupled dark energy with low-redshift and high-redshift probes
Lisa W. K. Goh, Adri\`a G\'omez-Valent, Valeria Pettorino, Martin, Kilbinger

TL;DR
This paper performs a tomographic analysis of coupled dark energy models using a variety of cosmological data, constraining the coupling strength across different redshifts and finding no evidence for nonzero coupling.
Contribution
First to analyze coupled dark energy with a tomographic approach across multiple datasets, providing new constraints on the coupling strength at various redshifts.
Findings
No evidence for nonzero coupling was found.
Tomographic coupling allows larger coupling values at low redshifts.
3x2pt data constrains coupling at $0.5<z<1$ with $eta=0.0180_{-0.011}^{+0.007}$.
Abstract
We consider coupled dark energy (CDE) cosmologies, where dark matter particles feel a force stronger than gravity, due to the fifth force mediated by a scalar field which plays the role of dark energy. We perform for the first time a tomographic analysis of coupled dark energy, where the coupling strength is parametrized and constrained in different redshift bins. This allows us to verify which data can better constrain the strength of the coupling and how large the coupling can be at different epochs. First, we employ cosmic microwave background data from Planck, the Atacama Cosmology Telescope (ACT) and South Pole Telescope (SPT), showing the impact of different choices that can be done in combining these datasets. Then, we use a range of low redshift probes to test CDE cosmologies, both for a constant and for a tomographic coupling. In particular, we use for the first time data from…
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Taxonomy
TopicsCosmology and Gravitation Theories · Radio Astronomy Observations and Technology · Dark Matter and Cosmic Phenomena
