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Radiation in the process of the formation of voids

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abstract

This paper aims to investigate the influence of inhomogeneous radiation in void formation. Since the process of void formation is non-linear, a fully relativistic model, which simulates the evolution of voids from the moment of the last scattering until the present instant, is presented. It is found that in order to obtain a model of a void which evolves from $\delta_0 = - 10^{-5}$ at the last scattering moment to the present day $\delta = - 0.94$, the existence of radiation must be taken into account. The ratio of radiation energy density to matter energy density in CDM models at the moment of last scattering is 1/5. This paper proves that such a value of radiation energy density cannot be neglected and influences the first stages of void evolution. Namely, it is important to the process of structure formation and hence significantly influences the dynamics of the Universe in the first millions of years after the last scattering. From the fact that the evolution of voids proceeds differently in various cosmological background models we use the process of void formation to put some limits on values of cosmological parameters. We find that the model with $\Omega_{mat} \approx 0.3$ fits the observational data best.

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2019 1

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  • Light path averages in spacetimes with non-vanishing average spatial curvature astro-ph.CO · 2019-09-02 · conditional · none · ref 42 · internal anchor

    Light-path averaged observables in Swiss cheese cosmologies show nearly the same mean and scatter in curved and flat FLRW backgrounds, indicating curvature does not significantly alter the relationship between line-of-sight and volume averages.