Local symmetries and physical degrees of freedom in gravity: a Dirac Hamiltonian constraint analysis
arXiv:2006.15303 · doi:10.1103/PhysRevD.102.064025
Abstract
In the literature on gravity, the status of local Lorentz invariance and the number of physical degrees of freedom have been controversial issues. Relying on a detailed Hamiltonian analysis, we show that there are several scenarios describing how local Lorentz invariance can be broken, but in the generic case, the number of physical degrees of freedom is found to be ; in dimensions, this number is . As expected, the theory is vulnerable to having problematical propagating modes. We compare our results with those existing in the literature. As a byproduct of our analysis, the diffeomorphysm invariance is explicitly confirmed.
LaTeX, 32 pages; v4: Small but important changes in Abstract and subsections 3.3 and 6.2
References in corpus (10)
- The Confrontation between General Relativity and Experiment
- Dark torsion as the cosmic speed-up
- Modified teleparallel gravity: inflation without inflaton
- Einstein's Other Gravity and the Acceleration of the Universe
- Degrees of freedom of gravity
- Torsion Cosmology and the Accelerating Universe
- Gauge Structure of Teleparallel Gravity
- Remnant Symmetry, Propagation and Evolution in f(T) Gravity
- Introduction to teleparallel gravities
- Canonical Structure of the Teleparallel Equivalent of General Relativity
Cited by in corpus (54)
- Teleparallel Gravity: From Theory to Cosmology
- New Horizons for Fundamental Physics with LISA
- Black Holes in Gravity: Exact and Perturbed Solutions
- Modified gravity: a unified approach
- Foundational issues in f(T) gravity theory
- Review of the Hamiltonian analysis in teleparallel gravity
- ADM formulation and Hamiltonian analysis of gravity
- Non-trivial Minkowski backgrounds in f(T) gravity
- Homogeneous and isotropic cosmology in general teleparallel gravity
- The effective field theory approach to the strong coupling issue in gravity
- Approaches to spherically symmetric solutions in f(T) gravity
- Cosmological perturbations in modified teleparallel gravity models: Boundary term extension
- Toward a concordance teleparallel Cosmology I: Background Dynamics
- Hamiltonian formulation of an effective modified gravity with nondynamical background fields
- Lorentz gauge-invariant variables in torsion-based theories of gravity
- Well-tempered teleparallel Horndeski cosmology: a teleparallel variation to the cosmological constant problem
- Lorentz symmetries and primary constraints in covariant teleparallel gravity
- Spontaneous Scalarization of Black Holes in Gauss-Bonnet Teleparallel Gravity
- Revisiting diagonal tetrads: New Black Hole solutions in gravity
- Thick accretion disk configurations in the Born-Infeld teleparallel gravity
- Inflation with F(T) Teleparallel Gravity
- Stability of symmetric teleparallel scalar-tensor cosmologies with alternative connections
- General Teleparallel Modifications of Schwarzschild Geometry
- A viable form of the metric Teleparallel F(T) theory of gravity
- Revisiting Stability in New General Relativity
- Hamilton's equations in the covariant teleparallel equivalent of general relativity
- The Gauss-Bonnet topological scalar in the Geometric Trinity of Gravity
- On the degrees of freedom count on singular phase space submanifolds
- Teleparallel bigravity
- The issue of Branched Hamiltonian in F(T) Teleparallel Gravity
- Degrees of Freedom in modified Teleparallel Gravity
- Teleparallel Geometry with Spherical Symmetry: The diagonal and proper frames
- Gravity: Background Dependence and Propagating Degrees of Freedom
- Teleparallel Minkowski Spacetime with Perturbative Approach for Teleparallel Gravity on a Proper Frame
- Field transformations and invariant quantities in scalar-teleparallel theories of gravity
- Dark matter effects in modified teleparallel gravity
- Role of the remnant symmetries in gravitational theories based on absolute parallelism: a 2D standpoint
- The Hamiltonian constraint in the symmetric teleparallel equivalent of general relativity
- A unified-description of curvature, torsion, and non-metricity of the metric-affine geometry with the Möbius representation
- First-order hyperbolic formulation of the pure tetrad teleparallel gravity theory
- Hamiltonian analysis of metric-affine- theory
- Spatially homogeneous teleparallel spacetimes with four-dimensional groups of motions
- Degrees of Freedom of New General Relativity I: Type 2, Type 3, Type 5, and Type 8
- Generalized Hidden Conformal Symmetry in Quadratic Gravity
- Weak Gravity Limit in Newer General Relativity
- Mass and angular momentum for the Kerr black hole in TEGR and STEGR
- Exact Analytical Taub-NUT like Solution in f(T) Gravity
- Post-Newtonian limit of generalized scalar-teleparallel theories of gravity
- Global portraits of nonminimal teleparallel inflation
- Entropy of black holes coupled to a scalar field
- New Rotating Black Hole Solutions With Imperfect Fluid Energy-Momentum Tensor In Gravity
- More on Bianchi I spacetimes and f(T) gravity
- Degrees of freedom of a quadratic scalar-nonmetricity theory
- New Lorentzian Taub-NUT and Euclidean Eguchi-Hanson Solutions in gravity