Gravity with Auxiliary Fields
arXiv:1306.1835 · doi:10.1103/PhysRevD.88.121502
Abstract
Modifications of General Relativity usually include extra dynamical degrees of freedom, which to date remain undetected. Here we explore the possibility of modifying Einstein's theory by adding solely nondynamical fields. With the minimal requirement that the theory satisfies the weak equivalence principle and admits a covariant Lagrangian formulation, we show that the field equations generically have to include higher-order derivatives of the matter fields. This has profound consequences for the viability of these theories. We develop a parametrization based on a derivative expansion and show that - to next to leading order - all theories are described by just two parameters. Our approach can be used to put stringent, theory-independent constraints on such theories, as we demonstrates using the Newtonian limit as an example.
5 pages, no figures; v2: clarifications and minor improvements, matches published version
References in corpus (8)
- The Confrontation between General Relativity and Experiment
- Avoiding Dark Energy with 1/R Modifications of Gravity
- A Parameterized Post-Friedmann Framework for Modified Gravity
- Surface singularities in Eddington-inspired Born-Infeld gravity
- A no-go theorem for polytropic spheres in Palatini f(R) gravity
- The viability of theories with matter coupled to the Ricci scalar
- Curvature singularities, tidal forces and the viability of Palatini f(R) gravity
- Microscopic and Macroscopic Behaviors of Palatini Modified Gravity Theories
Cited by in corpus (41)
- Testing General Relativity with Present and Future Astrophysical Observations
- Beyond the Cosmological Standard Model
- Theoretical Physics Implications of the Binary Black-Hole Mergers GW150914 and GW151226
- Transforming gravity: from derivative couplings to matter to second-order scalar-tensor theories beyond the Horndeski Lagrangian
- Prospects for Fundamental Physics with LISA
- Approximate Universal Relations for Neutron Stars and Quark Stars
- New Horizons for Fundamental Physics with LISA
- Born-Infeld inspired modifications of gravity
- Noether Symmetry Approach in Gravity
- Some Exact Solutions in Gravity via Noether Symmetries
- Gravity and Scalar Fields
- Physics at the surface of a star in Eddington-inspired Born-Infeld gravity
- Thick brane models in generalized theories of gravity
- Cosmology in modified -gravity
- Born-Infeld- gravity
- Brane worlds in gravity with auxiliary fields
- Non-trivial gravitational waves and structure formation phenomenology from dark energy
- Cascading dust inflation in Born-Infeld gravity
- New class of generalized coupling theories
- Cosmology with decaying cosmological constant -- exact solutions and model testing
- Scalar-Tensor gravity with system-dependent potential and its relation with Renormalization Group extended General Relativity
- Late Time Cosmological Evolution in f(R) theories with Ordinary and Collisional Matter
- Compact Object and Neutron Stars within Eddington-Inspired Born-Infeld Theory of Gravity
- MOND as the weak field limit of an extended metric theory of gravity with torsion
- New braneworld models in the presence of auxiliary fields
- Fundamental Physics and Cosmology with TianQin
- Minimal exponential measure model in the post-Newtonian limit
- Cosmology with higher-derivative matter fields
- Cosmological constant as an integration constant
- Cosmological scenarios in modified gravity with non-dynamical fields
- First-order framework for flat brane with auxiliary fields
- Investigating new forms of gravity-matter couplings in the gravitational field equations
- A short note on gravity with tensor auxiliary fields
- Non-vacuum relativistic extensions of MOND using metric theories of gravity with curvature-matter couplings and their applications to the accelerated expansion of the Universe without dark components
- Stability in higher-derivative matter fields theories
- Inflation in pure gravity with only massless spin-2 fields
- A link between ghost-free bimetric and Eddington-inspired Born-Infeld theory
- Matter-antimatter asymmetry in generalized coupling theories
- A Modified Gravitational Theory of the Matter Sector of the Type
- Junction conditions and sharp gradients in generalized coupling theories
- The ghost of vector fields in compact stars