English

Exact $(1 + 3 + 6)$-dimensional cosmological-type solutions in gravitational model with Yang-Mills field, Gauss-Bonnet term and $\Lambda$-term

General Relativity and Quantum Cosmology 2023-03-28 v2

Abstract

We consider 1010-dimensional gravitational model with SO(6)SO(6) Yang-Mills field, Gauss-Bonnet term and Λ\Lambda-term. We study so-called cosmological type solutions defined on product manifold M=R×R3×KM = R \times R^3 \times K, where KK is 6d6d Calabi-Yau manifold. By putting the gauge field 1-form to be coinciding with 1-form spin connection on KK, we obtain exact cosmological solutions with exponential dependence of scale factors (upon tt-variable), governed by two non-coinciding Hubble-like parameters: H>0H >0, hh, obeying H+2h0 H + 2 h \neq 0. We also present static analogs of these cosmological solutions (for H0H \neq 0, hHh \neq H and H+2h0 H + 2 h \neq 0). The islands of stability for both classes of solutions are outlined.

Keywords

Cite

@article{arxiv.2303.00139,
  title  = {Exact $(1 + 3 + 6)$-dimensional cosmological-type solutions in gravitational model with Yang-Mills field, Gauss-Bonnet term and $\Lambda$-term},
  author = {V. D. Ivashchuk and K. K. Ernazarov and A. A. Kobtsev},
  journal= {arXiv preprint arXiv:2303.00139},
  year   = {2023}
}

Comments

17 pages, 3 figures, LaTex, Revised version: 3 paragraphs are added into Introduction, new references are included and few references (self-citations) are omitted