English

Emergent Cosmology, Inflation and Dark Energy

General Relativity and Quantum Cosmology 2015-06-22 v4 High Energy Physics - Theory

Abstract

A new class of gravity-matter models defined in terms of two independent non-Riemannian volume forms (alternative generally covariant integration measure densities) on the space-time manifold are studied in some detail. These models involve an additional R2R^2 (square of the scalar curvature) term as well as scalar matter field potentials of appropriate form so that the pertinent action is invariant under global Weyl-scale symmetry. Scale invariance is spontaneously broken upon integration of the equations of motion for the auxiliary volume-form degrees of freedom. After performing transition to the physical Einstein frame we obtain: (i) An effective potential for the scalar field with two flat regions which allows for a unified description of both early universe inflation as well as of present dark energy epoch; (ii) For a definite parameter range the model possesses a non-singular "emergent universe" solution which describes an initial phase of evolution that precedes the inflationary phase; (iii) For a reasonable choice of the parameters the present model conforms to the Planck Collaboration data.

Keywords

Cite

@article{arxiv.1408.5344,
  title  = {Emergent Cosmology, Inflation and Dark Energy},
  author = {Eduardo Guendelman and Ramón Herrera and Pedro Labraña and Emil Nissimov and Svetlana Pacheva},
  journal= {arXiv preprint arXiv:1408.5344},
  year   = {2015}
}

Comments

v.1 14 pages, 2 figures; v.2 references and acknowledgements added; v.3 very significant upgrade - 24 pages, change of list of authors, two new sections, extended abstract, introduction and conclusions, additional citations and acknowledgements; v.4 title shortened, further improvements, version to appear in "General Relativity and Gravitation"