A new generic evolution for $k$-essence dark energy with $w \approx -1$
Abstract
We reexamine -essence dark energy models with a scalar field and a factorized Lagrangian, , with A value of the equation of state parameter, , near requires either or . Previous work showed that thawing models with evolve along a set of unique trajectories for , while those with can result in a variety of different forms for . We show that if is small and is roughly constant, then the latter models also converge toward a single unique set of behaviors for , different from those with . We derive the functional form for in this case, determine the conditions on for which it applies, and present observational constraints on this new class of models. We note that -essence models with correspond to a dark energy sound speed .
Cite
@article{arxiv.1905.05628,
title = {A new generic evolution for $k$-essence dark energy with $w \approx -1$},
author = {John Kehayias and Robert J. Scherrer},
journal= {arXiv preprint arXiv:1905.05628},
year = {2019}
}
Comments
7 pages, 2 figures, discussion and references added