Numerical Models of Cosmological Evolution of the Degenerated Fermi-system of Scalar Charged Particles
arXiv:1408.4738 · doi:10.1134/S0202289315020048
Abstract
Based on mathematical model of the statistical Fermi system with the interparticle interaction which was constructed in the previous articles, this work offers the construction and analysis of the numerical models of cosmological evolution of the single-component degenerated Fermi system of the scalar particles. The applied mathematics package Mathematica 9 is used for the numerical model construction.
15 pages, 14 figures, 4 references
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Cited by in corpus (6)
- Complete cosmological model based on a asymmetric scalar Higgs doublet
- Cosmological Models Based on a Statistical System of Scalar Charged Degenerate Fermions and an Asymmetric Higgs Scalar Doublet
- Cosmological evolution of a statistical system of degenerate scalar-charged fermions with an asymmetric scalar doublet. I. Two-component system of assorted charges
- The Qualitative and Numerical Analysis of the Cosmological Model Based on Phantom Scalar Field with Self
- The self-consistent field method and the macroscopic universe consisting of a fluid and a black holes
- Dynamics of cosmological models with nonlinear classical phantom scalar fields. I. Formulation of the mathematical model