Einstein-aether gravity: theory and observational constraints
arXiv:0711.3822 · doi:10.1142/9789812779519_0014
Abstract
Einstein-aether theory is general relativity coupled to a dynamical unit timelike vector field. A brief review of current theoretical understanding and observational constraints on the four coupling parameters of the theory is given.
8 pages, for proceedings of 4th Meeting on CPT and Lorentz Symmetry (CPT 07), Bloomington, Indiana, 8-11 Aug 2007
References in corpus (7)
- Stability of spherically symmetric solutions in modified theories of gravity
- Strong field effects on binary systems in Einstein-aether theory
- Neutron stars in Einstein-aether theory
- Detecting a Lorentz-Violating Field in Cosmology
- Numerical simulations of gravitational collapse in Einstein-aether theory
- Radiation Damping in Einstein-Aether Theory
- Generic features of Einstein-Aether black holes
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- Entanglement-enhanced test proposal for local Lorentz-symmetry violation via spinor atoms
- Entropies and The First Laws of Black Hole Thermodynamics in Einstein-aether-Maxwell Theory
- From Analogue Models to Gravitating Vacuum
- A note on non singular Einstein-Aether cosmologies
- Angular Momentum Loss for a Binary System in Einstein-Æther Theory
- Godel Type Metrics in Einstein-Aether Theory