Abstract:
We suggest a cosmological model with two real scalar fields ϕ1ϕ1 and ϕ2ϕ2, which play the role of both dark matter and dark energy. The field ϕ1ϕ1 is interpreted as dark matter, because the corresponding effective pressure p1p1 equals zero. When we choose a suitable potential V(ϕ1)V(ϕ1), the model can reproduce the classical Friedmann solutions with any curvature sign and also the correspondent solutions of the ΛΛCDM and wwCDM models. The suggested model describes interaction of the dark components (scalar fields) in a natural way via their common potential V(ϕ1,ϕ2)V(ϕ1,ϕ2). We determined a connection between the potential and a type of interaction, studied different variants of this interaction.
Keywords:
cosmological model, scalar field, dark matter, dark energy, interaction.
Received: 03.07.2019 Revised: 02.09.2019
Bibliographic databases:
Document Type:
Article
UDC:514.82
Language: Russian
Citation:
E. G. Vorontsova, G. S. Sharov, “Cosmological models with scalar fields”, Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2020, no. 1, 97–111
This publication is cited in the following 2 articles:
E. G. Vorontsova, G. S. Sharov, “Kosmologicheskie modeli s modifitsirovannymi uravneniyami sostoyaniya temnoi energii”, Vestnik TvGU. Seriya: Prikladnaya matematika, 2023, no. 3, 19–40
G. S. Sharov, “Interactive, F(R)F(R) and Other Cosmological Models, Recent Observational Data and H0H0 Tension”, Phys. Atom. Nuclei, 84:4 (2021), 595