Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2004 · 330 citations · 27 references
Alternative CosmologyEngineeringGeneral RelativityPhysicsGravitational EffectsCosmologySpecial RelativityModified GravityLorentz-violating Vector FieldsDark EnergyGravity EffectsEnergy DensityVector FieldObservational CosmologyGravitation TheoryQuantum Cosmology
We consider the gravitational effects of a single, fixed-norm, Lorentz-violating timelike vector field. In a cosmological background, such a vector field acts to rescale the effective value of Newton's constant. The energy density of this vector field precisely tracks the energy density of the rest of the universe, but with the opposite sign, so that the universe experiences a slower rate of expansion for a given matter content. This vector field similarly rescales Newton's constant in the Newtonian limit, although by a different factor. We put constraints on the parameters of the theory using the predictions of primordial nucleosynthesis, demonstrating that the norm of the vector field should be less than the Planck scale by an order of magnitude or more.
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Relativistic gravitation theory for the modified Newtonian dynamics paradigm
Jacob D. Bekenstein · Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2004 · 1.4K citations
Relativistic Astrophysics, Engineering, General Relativity +10