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Observational constraints on inhomogeneous cosmological models without dark energy

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abstract

It has been proposed that the observed dark energy can be explained away by the effect of large-scale nonlinear inhomogeneities. In the present paper we discuss how observations constrain cosmological models featuring large voids. We start by considering Copernican models, in which the observer is not occupying a special position and homogeneity is preserved on a very large scale. We show how these models, at least in their current realizations, are constrained to give small, but perhaps not negligible in certain contexts, corrections to the cosmological observables. We then examine non-Copernican models, in which the observer is close to the center of a very large void. These models can give large corrections to the observables which mimic an accelerated FLRW model. We carefully discuss the main observables and tests able to exclude them.

fields

gr-qc 1

years

2019 1

verdicts

CONDITIONAL 1

representative citing papers

Physical geometry of the quasispherical Szekeres models

gr-qc · 2019-08-07 · conditional · novelty 6.0

The dipole functions in quasispherical Szekeres models shift shells relative to each other and rotate their local frames by exact amounts, and the paper shows how these effects explain the models' geometry.

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  • Physical geometry of the quasispherical Szekeres models gr-qc · 2019-08-07 · conditional · none · ref 37 · internal anchor

    The dipole functions in quasispherical Szekeres models shift shells relative to each other and rotate their local frames by exact amounts, and the paper shows how these effects explain the models' geometry.