Author:
Fanizza Giuseppe,Pavone Eliseo,Tedesco Luigi
Abstract
AbstractWe study the so-called Gravitational Wave luminosity distance-redshift relation dLGW(z) during cosmological eras driven by non-perfect fluids. In particular, we show that the presence of a shear viscosity in the energy momentum tensor turns out to be the most relevant effect. Within this scenario, a constant shear viscosity imprints the gravitational wave propagation through a friction termδ(z) with a uniquely given redshift dependence. This peculiar evolution predicts a specific shape for the ratiodLGW/dLEMwhich tends to a constant value when the sources are atz≳ 1, whereas scales linearly with the shear viscosity at lower redshifts, regardless of the value of Ωm0. According to our final discussion, the predicted redshift dependenceδ(z) provided by a shear viscosity could be tested by upcoming surveys of multi-messenger sources against analogous scenarios provided by some widely studied theories of modified gravity.
Subject
Astronomy and Astrophysics
Cited by
1 articles.
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1. On the stability of string-hole gas;Journal of Cosmology and Astroparticle Physics;2024-01-01