Constraining the dark-energy equation of state with cosmological data
Yu-Ping Teng, Wolung Lee, Kin‐Wang Ng
Abstract
Open-access reader
Yu-Ping Teng, Wolung Lee, Kin‐Wang Ng
Abstract
Open-access reader
Recently, the observed equation of state for dark energy appears to favor values below $\ensuremath{-}1$. The tendency implies that the nature of dark energy may be quite different from that of the cosmological constant. In view of the adjustment on the equation of state keeps decreasing, the introduction of the phantom energy seems inevitable. By employing observational constraints from supernovae and from the acoustic scale in which the accuracy of the data has become extraordinary, we apply a phenomenological scenario to be acquainted with the evolution of our universe. The demonstration on the constrained unfolding of the phantom energy shows the model has high consistency with the current observation.
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Recently, the observed equation of state for dark energy appears to favor values below $\ensuremath{-}1$. The tendency implies that the nature of dark energy may be quite different from that of the cosmological constant. In view of the adjustment on the equation of state keeps decreasing, the introduction of the phantom energy seems inevitable. By employing observational constraints from supernovae and from the acoustic scale in which the accuracy of the data has become extraordinary, we apply a phenomenological scenario to be acquainted with the evolution of our universe. The demonstration on the constrained unfolding of the phantom energy shows the model has high consistency with the current observation.
Key concepts: Dark energy, Equation of state, Physics, Imaging phantom, Phantom energy, Cosmology, Cosmological constant, Energy (signal processing)