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Stability of cosmic structures in scalar-tensor theories of gravity

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abstract

In the present work we study a concrete model of Scalar--Tensor theory of gravity characterized by two free parameters, and compare its predictions against observational data and constraints coming from supernovae, solar system tests as well as the stability of cosmic structures. First an exact analytical solution at the background level is obtained. Then using that solution the expression for the turnaround radius is computed. Finally we show graphically how current data and limits put bounds on the parameters of the model at hand.

fields

gr-qc 1

years

2026 1

verdicts

CONDITIONAL 1

representative citing papers

Evolution of matter perturbations in the context of cosmic slowing down

gr-qc · 2026-08-05 · conditional · novelty 4.0

For five phantom-capable dark-energy parameterizations, the growth index at redshift zero is about 0.54 with a negative slope, and the f-sigma-8 combination lies below the Lambda-CDM prediction over most of the redshift range shown.

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  • Evolution of matter perturbations in the context of cosmic slowing down gr-qc · 2026-08-05 · conditional · none · ref 46 · internal anchor

    For five phantom-capable dark-energy parameterizations, the growth index at redshift zero is about 0.54 with a negative slope, and the f-sigma-8 combination lies below the Lambda-CDM prediction over most of the redshift range shown.