$\Lambda(t)$ cosmology induced by a slowly varying Elko field
Abstract
In this work the exact Friedmann-Robertson-Walker equations for an Elko spinor field coupled to gravity in an Einstein-Cartan framework are presented. The torsion functions coupling the Elko field spin-connection to gravity can be exactly solved and the FRW equations for the system assume a relatively simple form. In the limit of a slowly varying Elko spinor field there is a relevant contribution to the field equations acting exactly as a time varying cosmological model , where and are constants. Observational data using distance luminosity from magnitudes of supernovae constraint the parameters and , which leads to a lower limit to the Elko mass. Such model mimics, then, the effects of a dark energy fluid, here sourced by the Elko spinor field. The density perturbations in the linear regime were also studied in the pseudo-Newtonian formalism.
Cite
@article{arxiv.1608.02777,
title = {$\Lambda(t)$ cosmology induced by a slowly varying Elko field},
author = {S. H. Pereira and S. S. A. Pinho and J. M. Hoff da Silva and J. F. Jesus},
journal= {arXiv preprint arXiv:1608.02777},
year = {2017}
}
Comments
15 pages, 4 figures; New section on evolution of density perturbations added