English

Modified scaling in $k$-essence model in interacting dark energy - dark matter scenario

General Relativity and Quantum Cosmology 2022-11-24 v3 Cosmology and Nongalactic Astrophysics

Abstract

It has been shown by \textit{Scherrer and Putter et.al} that, when dynamics of dark energy is driven by a homogeneous kk-essence scalar field ϕ\phi, with a Lagrangian of the form L=V0F(X)L = V_0F(X) with a constant potential V0V_0 and X=12μϕμϕ=12ϕ˙2X = \frac{1}{2}\nabla^\mu\phi \nabla_\mu\phi = \frac{1}{2}\dot{\phi}^2, one obtains a scaling relation X(dF/dX)2=Ca6X(dF/dX)^2 = Ca^{-6} , where CC is a constant and aa is the FRW scale factor of the universe. The separate energy conservation in the dark energy sector and the constancy of kk-essence potential are instrumental in obtaining such a scaling. In this paper, we have shown that even when considering time-dependent interactions between dark energy and dark matter, the constancy of kk-essence potential may lead to a modified form of scaling. We have obtained such a scaling relation for a particular class of parametrisation of the source term occurring in the continuity equation of dark energy and dark matter in the interacting scenario. We used inputs from the JLA analysis of luminosity distance and redshift data from Supernova Ia observations, to obtain the modified form of the scaling.

Keywords

Cite

@article{arxiv.2207.00888,
  title  = {Modified scaling in $k$-essence model in interacting dark energy - dark matter scenario},
  author = {Anirban Chatterjee and Biswajit Jana and Abhijit Bandyopadhyay},
  journal= {arXiv preprint arXiv:2207.00888},
  year   = {2022}
}

Comments

21 pages and 6 figures. This version has been accepted for publication in European Physical Journal Plus