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Gravitational Wave Distances in Horndeski Cosmology
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abstract
Gravitational wave propagation encounters a spacetime friction from a running Planck mass in modified gravity, causing the luminosity distance to deviate from that in general relativity (or given by the photon luminosity distance to the source), thus making it a valuable cosmological probe. We present the exact expression for the cosmological distance deviation in Horndeski gravity including theories that have a $G_5$ term yet propagate at the speed of light. An especially simple result ensues for coupled Gauss-Bonnet gravity, which we use to show it does not give a viable cosmology. We also generalize such coupling, and review the important connection of gravitational wave cosmological distance deviations to growth of cosmic structure measured by redshift space distortions.
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Cited by 1 Pith paper
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Exploring cosmological imprints of phantom crossing with dynamical dark energy in Horndeski gravity
A Horndeski scalar-field dark energy model that crosses the phantom divide and has negative early-time energy density fits cosmological data as well as LambdaCDM but does not resolve the main tensions.
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