An FLRW interacting dark energy model of the Universe
arXiv:2002.11486 · doi:10.1016/j.newast.2020.101368
Abstract
In this paper, we have presented an FLRW universe containing two-fluids (baryonic and dark energy) with a deceleration parameter (DP) having a transition from past decelerating to the present accelerating universe. In this model, dark energy (DE) interacts with dust to produce a new law for the density. As per our model, our universe is at present in a phantom phase after passing through a quintessence phase in the past. The physical importance of the two-fluid scenario is described in various aspects. The model is shown to satisfy current observational constraints such as recent Planck results. Various cosmological parameters relating to the history of the universe have been investigated.
10 pages, 6 figures. arXiv admin note: substantial text overlap with arXiv:1906.00450, arXiv:1905.10801
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