arXiv · 1507.06123
Constraining $f(R)$ gravity by the Large Scale Structure
Abstract
Over the past decades, General Relativity and the concordance $Λ$CDM model have been successfully tested using several different astrophysical and cosmological probes based on large datasets ({\it precision cosmology}). Despite their successes, some shortcomings emerge due to the fact that General Relativity should be revised at infrared and ultraviolet limits and to the fact that the fundamental nature of Dark Matter and Dark Energy is still a puzzle to be solved. In this perspective, $f(R)$ gravity have been extensively investigated being the most straightforward way to modify General Relativity and to overcame some of the above shortcomings. In this paper, we review various aspects of $f(R)$ gravity at extragalactic and cosmological levels. In particular, we consider cluster of galaxies, cosmological perturbations, and N-Body simulations, focusing on those models that satisfy both cosmological and local gravity constraints. The perspective is that some classes of $f(R)$ models can be consistently constrained by Large Scale Structure.
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Ivan de Martino, Mariafelicia De Laurentis, Salvatore Capozziello. 2015-07-27. Constraining $f(R)$ gravity by the Large Scale Structure. https://doi.org/10.3390/universe1020123
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