The dynamics of scalar fields as dark energy is well approximated by some
general relations between the equation of state parameter w(z) and the
fraction energy density Ωϕ. Based on the approximation, for
slowly-rolling scalar fields, we derived the analytical expressions of w(z)
which reduce to the popular Chevallier-Polarski-Linder parametrization with
explicit degeneracy relation between w0 and wa. The models approximate
the dynamics of scalar fields well and help eliminate the degeneracies among
wa, w0 and Ωm0. With the explicit degeneracy relations, we test
their effects on the constraints of cosmological parameters. We find that: (1)
The analytical relations between w0 and wa for the two models are
consistent with observational data; (2) The degeneracies have little effect on
Ωm0; (3) The 1σ error of w0 was reduced about 30% with the
degeneracy relations.Comment: add discussions on the reconstruction of thawing potentials, Eur.
Phys. J. C in pres