Dark energy with zero pressure: Accelerated expansion and large scale structure in action-dependent Lagrangian theories

Thiago R. P. Caramês, H. Velten, J. C. Fabris, and Matheus J. Lazo
Phys. Rev. D 98, 103501 – Published 1 November 2018

Abstract

We develop a cosmological model based on action-dependent Lagrangian theories. The main feature here is the nonconservation of the energy momentum tensor due to the nontrivial geometrical construction of the theory. We provide the basic set of equations necessary to study both the cosmological background expansion as well as the linear matter perturbation growth. We show that the simplest realization of the Universe as described by only one component is not viable as expected from the existing correspondence between this model and the case of viscous cosmological fluids. However, modeling the energy content of the Universe as composed by two pressureless fluids, i.e., one a typical cold dark matter fluid and the other a pressureless “dark energy” fluid which is responsible for driving the late-time acceleration expansion, is qualitatively compatible with observational data.

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  • Received 11 August 2018

DOI:https://doi.org/10.1103/PhysRevD.98.103501

© 2018 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Thiago R. P. Caramês* and H. Velten

  • Núcleo Cosmo-ufes & Departamento de Física, Universidade Federal do Espírito Santo, Avenida Fernando Ferrari 514, Vitória 29075-910, Espírito Santo, Brazil

J. C. Fabris

  • Núcleo Cosmo-ufes & Departamento de Física, Universidade Federal do Espírito Santo, Avenida Fernando Ferrari 514, Vitória 29075-910, Espírito Santo, Brazil and National Research Nuclear University MEPhI Kashirskoe sh. 31, Moscow 115409, Russia

Matheus J. Lazo§

  • Instituto de Matemática, Estatística e Física - FURG, Rio Grande 96201-900, Rio Grande do Sul, Brazil

  • *trpcarames@gmail.com
  • velten@pq.cnpq.br
  • julio.fabris@cosmo-ufes.org
  • §matheusjlazo@gmail.com

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Issue

Vol. 98, Iss. 10 — 15 November 2018

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