Small solutions of the Einstein–Boltzmann-scalar field system with Bianchi symmetry

Author:

Lee Ho1ORCID,Lee Jiho2ORCID,Nungesser Ernesto3ORCID

Affiliation:

1. Department of Mathematics and Research Institute for Basic Science, Kyung Hee University 1 , Seoul 02447, Republic of Korea

2. Department of Mathematics, Kyung Hee University 2 , Seoul 02447, Republic of Korea

3. M2ASAI, Universidad Politécnica de Madrid, ETSI Navales 3 , Avda. de la Memoria, 4, 28040 Madrid, Spain

Abstract

We show that small homogeneous solutions to the Einstein–Boltzmann-scalar field system exist globally toward the future and tend to the de Sitter solution in a suitable sense. More specifically, we assume that the spacetime is of Bianchi type I–VIII, that the matter is described by Israel particles and that there exists a scalar field with a potential which has a positive lower bound. This represents a generalization of the work [H. Lee and E. Nungesser, Classical Quantum Gravity 35, 025001 (2018)], where a cosmological constant was considered, and a generalization of [H. Lee and J. Lee, J. Math. Phys. 63, 031502 (2022)], where a spatially flat FLRW spacetime was considered. We obtain the global existence and asymptotic behavior of classical solutions to the Einstein–Boltzmann-scalar field system for small initial data.

Funder

National Research Foundation of Korea

Agencia Estatal de Investigación

Publisher

AIP Publishing

Subject

Mathematical Physics,Statistical and Nonlinear Physics

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