Preferred frame parameters in the tensor-vector-scalar theory of gravity and its generalization
arXiv:0905.4001 · doi:10.1103/PhysRevD.80.044032
Abstract
The Tensor-Vector-Scalar theory of gravity, which was designed as a relativistic implementation to the modified dynamics paradigm, has fared quite well as an alternative to dark matter, on both galactic and cosmological scales. However, its performance in the solar system, as embodied in the post-Newtonian formalism, has not yet been fully investigated. Tamaki has recently attempted to calculate the preferred frame parameters for TeVeS, but ignored the cosmological value of the scalar field, thus concluding that the Newtonian potential must be static in order to be consistent with the vector equation. We show that when the cosmological value of the scalar field is taken into account, there is no constraint on the Newtonian potential; however, the cosmological value of the scalar field is tightly linked to the vector field coupling constant K, preventing the former from evolving as predicted by its equation of motion. We then proceed to investigate the post-Newtonian limit of a generalized version of TeVeS, with Æther type vector action, and show that its β,γand ξparameters are as in GR, while solar system constraints on the preferred frame parameters α_1 and α_2 can be satisfied within a modest range of small values of the scalar and vector fields coupling parameters, and for values of the cosmological scalar field consistent with evolution within the framework of existing models.
16 pages, 2 figures Figures and corresponding discussion replaced; added references
References in corpus (13)
- Can Cosmic Structure form without Dark Matter?
- The modified Newtonian dynamics-MOND-and its implications for new physics
- Generalizing TeVeS Cosmology
- Stability of spherically symmetric solutions in modified theories of gravity
- Can MOND take a bullet? Analytical comparisons of three versions of MOND beyond spherical symmetry
- TeVeS gets caught on caustics
- The cosmological behavior of Bekenstein's modified theory of gravity
- Strong lensing probability for testing TeVeS theory
- Do Newton's G and Milgrom's a_0 vary with cosmological epoch ?
- Black holes in the TeVeS theory of gravity and their thermodynamics
- Stellar Oscillations in Tensor-Vector-Scalar Theory
- Strong lensing probability in TeVeS theory
- Post-Newtonian parameters in the tensor-vector-scalar theory
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- Gravitational waves in Einstein-æther and generalized TeVeS theory after GW170817
- MOND effects in the inner solar system
- Vector field models of modified gravity and the dark sector
- A new limit on local Lorentz invariance violation of gravity from solitary pulsars
- Nonlocal metric formulations of MOND with sufficient lensing
- A general class of gravitational theories as alternatives to dark matter where the speed of gravity always equals the speed of light
- Propagation of Gravitational Waves in Generalized TeVeS
- Field equations and cosmology for a class of nonlocal metric models of MOND
- Modified gravity approach based on a preferred time foliation
- Gravitational waves in Einstein-Æther theory and generalized TeVeS theory after GW170817
- Black holes and neutron stars in the generalized tensor-vector-scalar theory
- Mass of Galactic Lenses in Modified Newtonian Dynamics
- Tensor-vector-scalar-modified gravity: from small scale to cosmology
- Substructure lensing in galaxy clusters as a constraint on low-mass sterile neutrinos in tensor-vector-scalar theory: The straight arc of Abell 2390
- Stability and Quasinormal Modes of Black holes in Tensor-Vector-Scalar theory: Scalar Field Perturbations
- Hamiltonian Map to Conformal Modification of Spacetime Metric: Kaluza-Klein and TeVeS
- Gravitational Cherenkov losses in MOND theories
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- Parameterized second post-Newtonian framework with conservation Laws