English

Do the cosmological observational data prefer phantom dark energy?

Cosmology and Nongalactic Astrophysics 2013-05-30 v2

Abstract

The dynamics of expansion and large scale structure formation of the Universe are analyzed for models with dark energy in the form of a phantom scalar field which initially mimics a Λ\Lambda-term and evolves slowly to the Big Rip singularity. The discussed model of dark energy has three parameters -- the density and the equation of state parameter at the current epoch, Ωde\Omega_{de} and w0w_0, and the asymptotic value of the equation of state parameter at aa\rightarrow\infty, ca2c_a^2. Their best-fit values are determined jointly with all other cosmological parameters by the MCMC method using observational data on CMB anisotropies and polarization, SNe Ia luminosity distances, BAO measurements and more. Similar computations are carried out for Λ\LambdaCDM and a quintessence scalar field model of dark energy. It is shown that the current data slightly prefer the phantom model, but the differences in the maximum likelihoods are not statistically significant. It is also shown that the phantom dark energy with monotonically increasing density in future will cause the decay of large scale linear matter density perturbations due to the gravitational domination of dark energy perturbations long before the Big Rip singularity.

Keywords

Cite

@article{arxiv.1206.5194,
  title  = {Do the cosmological observational data prefer phantom dark energy?},
  author = {Bohdan Novosyadlyj and Olga Sergijenko and Ruth Durrer and Volodymyr Pelykh},
  journal= {arXiv preprint arXiv:1206.5194},
  year   = {2013}
}

Comments

13 pages, 8 figures, 5 tables; comments and references added; version accepted for publication in Phys.Rev.D

R2 v1 2026-06-21T21:23:59.564Z