The distance–redshift equation in quintessence cosmology and the estimation of H0 through time delays |
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Authors: | Fabio Giovi Luca Amendola |
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Affiliation: | Osservatorio Astronomico di Roma, Viale del Parco Mellini 84, 00136 Roma, Italy |
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Abstract: | We calculate analytically and numerically the distance–redshift equation in perfect fluid quintessence models and give an accurate fit to the numerical solutions for all the values of the density parameter and the quintessence equation of state. Then we apply our solutions to the estimation of H 0 from multiple image time delays and find that the inclusion of quintessence modifies significantly the likelihood distribution of H 0, generally reducing the best estimate with respect to a pure cosmological constant. Marginalizing over the other parameters (Ω m and the quintessence equation of state) we obtain H 0=71±6 km s−1 Mpc−1 for an empty beam and H 0=64±4 km s−1 Mpc−1 for a filled beam. These errors, however, do not take into account the uncertainty on the modelling of the lens. We also discuss the future prospects for distinguishing quintessence from a cosmological constant with time delays. |
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Keywords: | galaxies: clusters: general galaxies: statistics large-scale structure of Universe |
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