English

The $k$-essence scalar field in the context of Supernova Ia Observations

Cosmology and Nongalactic Astrophysics 2012-04-11 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

A kk-essence scalar field model having (non canonical) Lagrangian of the form L=V(ϕ)F(X)L=-V(\phi)F(X) where X=1/2gμνμϕνϕX=1/2g^{\mu\nu}\nabla_{\mu}\phi\nabla_{\nu}\phi with constant V(ϕ)V(\phi) is shown to be consistent with luminosity distance-redshift data observed for type Ia Supernova. For constant V(ϕ)V(\phi), F(X)F(X) satisfies a scaling relation which is used to set up a differential equation involving the Hubble parameter HH, the scale factor aa and the kk-essence field ϕ\phi. HH and aa are extracted from SNe Ia data and using the differential equation the time dependence of the field ϕ\phi is found to be: ϕ(t)λ0+λ1t+λ2t2\phi(t) \sim \lambda_0 + \lambda_1 t + \lambda_2 t^2. The constants λi\lambda_i have been determined. The time dependence is similar to that of the quintessence scalar field (having canonical kinetic energy) responsible for homogeneous inflation. Furthermore, the scaling relation and the obtained time dependence of the field ϕ\phi is used to determine the XX-dependence of the function F(X)F(X).

Keywords

Cite

@article{arxiv.1102.3554,
  title  = {The $k$-essence scalar field in the context of Supernova Ia Observations},
  author = {Abhijit Bandyopadhyay and Debashis Gangopadhyay and Arka Moulik},
  journal= {arXiv preprint arXiv:1102.3554},
  year   = {2012}
}

Comments

8 pages, 5 figures, Latex