A phase space description of the FLRW quantum cosmology in Hořava–Lifshitz type gravity

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Abstract

Quantum cosmology of the Friedmann–Lemaître–Robertson–Walker model with cosmological constant in the Hořava–Lifshitz type gravity is studied in the phase space by means of the Wigner function. The modification of the usual general relativity description by the Hořava–Lifshitz type gravity induces a new scenario for the origin of the Universe with an embryonic era where the Universe can exist classically before the tunneling process takes place and which gives rise to the current evolution of the Universe. The Wigner functions corresponding to the Hartle–Hawking, Vilenkin and Linde boundary conditions are obtained by means of numerical calculations. In particular three cases were studied for the potential of the Wheeler–DeWitt equation: tunneling barrier with and without embryonic era and when the potential barrier is not present. The quantum behavior of these three cases are analyzed using the Wigner function for the three boundary conditions considered.

Translated title of the contributionUna descripción del espacio de fase de la cosmología cuántica FLRW en la gravedad de tipo Hořava-Lifshitz
Original languageEnglish
Article number138
JournalGeneral Relativity and Gravitation
Volume51
Issue number10
DOIs
StatePublished - 1 Oct 2019

Keywords

  • Hořava–Lifshitz gravity
  • Quantum cosmology
  • Wigner functions

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