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On the effect of the degeneracy between w_0 and w_a

Abstract

The dynamics of scalar fields as dark energy is well approximated by some general relations between the equation of state parameter w(z)w(z) and the fraction energy density Ωϕ\Omega_\phi. Based on the approximation, for slowly-rolling scalar fields, we derived the analytical expressions of w(z)w(z) which reduce to the popular Chevallier-Polarski-Linder parametrization with explicit degeneracy relation between w0w_0 and waw_a. The models approximate the dynamics of scalar fields well and help eliminate the degeneracies among waw_a, w0w_0 and Ωm0\Omega_{m0}. With the explicit degeneracy relations, we test their effects on the constraints of cosmological parameters. We find that: (1) The analytical relations between w0w_0 and waw_a for the two models are consistent with observational data; (2) The degeneracies have little effect on Ωm0\Omega_{m0}; (3) The 1σ1\sigma error of w0w_0 was reduced about 30% with the degeneracy relations.Comment: add discussions on the reconstruction of thawing potentials, Eur. Phys. J. C in pres

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