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Large scale structure as a probe of gravitational slip

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PHYSICAL REVIEW D
卷 77, 期 10, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.77.103513

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A new time-dependent, scale-independent parameter, (omega) over bar, is employed in a phenomenological model of the deviation from general relativity in which the Newtonian and longitudinal gravitational potentials slip apart on cosmological scales as dark energy, assumed to be arising from a new theory of gravitation, appears to dominate the Universe. A comparison is presented between (omega) over bar and other parametrized post-Friedmannian models in the literature. The effect of (omega) over bar on the cosmic microwave background anisotropy spectrum, the growth of large-scale structure, the galaxy weak-lensing correlation function, and cross correlations of cosmic microwave background anisotropy with galaxy clustering are illustrated. Cosmological models with conventional maximum likelihood parameters are shown to find agreement with a narrow range of gravitational slip.

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