paper

Non-adiabatic perturbations in decaying vacuum cosmology

arXiv:1009.0672 · doi:10.1088/1475-7516/2011/04/028

Abstract

We investigate a spatially flat Friedmann-Lemaître-Robertson-Walker cosmology in which a decaying vacuum term causes matter production at late times. Assuming a decay proportional to the Hubble rate, the ratio of the background energy densities of dark matter and dark energy changes with the cosmic scale factor as . The intrinsically non-adiabatic two-component perturbation dynamics of this model is reduced to a single second-order equation. Perturbations of the vacuum term are shown to be negligible on scales that are relevant for structure formation. On larger scales, dark-energy perturbations give a somewhat higher contribution but remain always smaller than the dark-matter perturbations.

13 pages, 4 figures, discussion of initial conditions enlarged, accepted for publication in JCAP