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Structure Formation in Non-local Bouncing Models

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arxiv 2303.17552 v1 pith:4JMW4K5Y submitted 2023-03-30 gr-qc hep-th

classification gr-qchep-th
keywords bouncinggrowthnon-localsigmastructurestructuresbounceevolution
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abstract

In this study, we investigate the growth of structures within the Deser-Woodard nonlocal theory and extend it to various bouncing cosmology scenarios. Our findings show that the observable structure growth rate, $f\sigma_8$, in a vacuum-dominated universe is finite within the redshift range of $0<z<2$, contrary to previous literature. Although $f\sigma_8$ exhibits no divergences, we observe a slight difference between the evolution of the $\Lambda$CDM and the non-local DW II models. Regarding structure formation in bouncing cosmologies, we evaluate the evolution of $f\sigma_8$ near the bouncing point. Among the different bouncing cases we explore, the oscillatory bounce and pre-inflationary asymmetrical bounce demonstrate a physical profile where the growth rate begins as a small perturbation in the early epoch and increases with inflation, which can be regarded as the seeds of large-scale structures. These findings are significant because they shed light on the growth of seed fluctuations into cosmic structures resulting from non-local effects.

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  1. Quasinormal modes of nonlocal gravity black holes

    gr-qc 2025-07 conditional novelty 6.0 of 10

    Quasinormal frequencies of nonlocal gravity black holes deviate from Schwarzschild values by up to about 12%, and the derived bounds on the model parameters α and k depend on projected detector sensitivity.

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