Publication | Open Access
Reconstruction of a Scalar-Tensor Theory of Gravity in an Accelerating Universe
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Citations
25
References
2000
Year
First OrderEngineeringGeneral RelativityCosmologyModified GravityQuantum Field TheoryGeometric RelativityScalar-tensor TheoryQuantum CosmologyDark MatterAccelerating UniverseObservational CosmologyGravitation TheoryEarly UniversePresent Acceleration
The present acceleration of the Universe strongly indicated by recent observational data can be modeled in the scope of a scalar-tensor theory of gravity. We show that it is possible to determine the structure of this theory along with the present density of dustlike matter from two observable cosmological functions: the luminosity distance and the linear density perturbation in the dustlike matter component as functions of redshift. Explicit results are presented in the first order in the small inverse Brans-Dicke parameter omega(-1).
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