Forecasts for interacting dark energy with time-dependent momentum exchange
arXiv:2504.03555 · doi:10.1088/1475-7516/2025/10/052
Abstract
Models of interacting dark energy and dark matter offer a possible solution to cosmological tensions. In this work, we examine a pure momentum-exchange model with a time-dependent coupling strength that could help to alleviate the tension. We perform Fisher forecasting and MCMC analysis to constrain the coupling strength of this interaction for different redshift bins , using the specifications of upcoming DESI-like surveys. For this analysis, we examine both a model with a constant equation of state , as well as a thawing dark energy model with an evolving . We show that, for a constant equation of state, can be well constrained in all redshift bins. However, due to a weaker effect at early times, the constraints are significantly reduced at high redshifts in the case of a thawing model.
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