Imprint of f(R) gravity in the cosmic magnification

Author:

Duniya Didam G A1ORCID,Abebe Amare23ORCID,de la Cruz-Dombriz Álvaro45,Dunsby Peter K S5

Affiliation:

1. Department of Physics & Astronomy, Botswana International University of Science and Technology , Palapye 00000, Botswana

2. Centre for Space Research, North-West University , Mahikeng 2745, South Africa

3. National Institute for Theoretical and Computational Sciences (NITheCS) , South Africa

4. Departamento de Física Fundamental , Universidad de Salamanca, P. de la Merced, E-37008 Salamanca, Spain

5. Department of Mathematics & Applied Mathematics, University of Cape Town , Cape Town 7701, South Africa

Abstract

ABSTRACT f(R) gravity is one of the simplest viable modifications to General Relativity: it passes local astrophysical tests, predicts both the early-time cosmic inflation and the late-time cosmic acceleration, and describes dark matter. In this paper, we probe cosmic magnification on large scales in f(R) gravity, using the well-known Hu-Sawicki model as an example. Our results indicate that at redshifts $z \, {\lt }\, 3$, values of the model exponent $n \, {\gt }\, 1$ lead to inconsistent behaviour in the evolution of the scalar perturbations. Moreover, when relativistic effects are taken into account in the large-scale analysis, our results show that as z increases, large-scale changes in the cosmic magnification angular power spectrum owing to integral values of n tend to share a similar pattern, while those of decimal values tend to share another. This feature could be searched for in the experimental data, as a potential ‘smoking gun’ for the given class of gravity models. Furthermore, we found that at $z \, {=}\, 1$ and lower, relativistic effects lead to a suppression of the cosmic magnification on large scales in f(R) gravity, relative to the concordance model; whereas, at $z \, {\gt }\, 1$, relativistic effects lead to a relative boost of the cosmic magnification. In general, relativistic effects enhance the potential of the cosmic magnification as a cosmological probe.

Funder

National Research Foundation

MICINN

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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