A Gauge Theoretic Approach to Gravity
arXiv:1202.6183 · doi:10.1098/rspa.2011.0638
Abstract
Einstein's General Relativity (GR) is a dynamical theory of the spacetime metric. We describe an approach in which GR becomes an SU(2) gauge theory. We start at the linearised level and show how a gauge theoretic Lagrangian for non-interacting massless spin two particles (gravitons) takes a much more simple and compact form than in the standard metric description. Moreover, in contrast to the GR situation, the gauge theory Lagrangian is convex. We then proceed with a formulation of the full non-linear theory. The equivalence to the metric-based GR holds only at the level of solutions of the field equations, that is, on-shell. The gauge-theoretic approach also makes it clear that GR is not the only interacting theory of massless spin two particles, in spite of the GR uniqueness theorems available in the metric description. Thus, there is an inifnite-parameter class of gravity theories all describing just two propagating polarisations of the graviton. We describe how matter can be coupled to gravity in this formulation and, in particular, how both the gravity and Yang-Mills arise as sectors of a general diffeomorphism invariant gauge theory. We finish by outlining a possible scenario of the UV completion of quantum gravity within this approach.
40 pages; invited review to appear in Proceedings of the Royal Society A
References in corpus (10)
- The quantum mechanics of perfect fluids
- Physics of Trans-Planckian Gravity
- New Action Principle for General Relativity
- Gravity as a diffeomorphism invariant gauge theory
- On deformations of Ashtekar's constraint algebra
- Renormalizable Non-Metric Quantum Gravity?
- Non-Metric Gravity II: Spherically Symmetric Solution, Missing Mass and Redshifts of Quasars
- Spontaneous symmetry breaking and gravity
- A Unified Theory of Non-Linear Electrodynamics and Gravity
- Halos of Modified Gravity
Cited by in corpus (25)
- The free energy principle made simpler but not too simple
- Actions for Self-dual Higher Spin Gravities
- Holonomy spin foam models: Asymptotic geometry of the partition function
- Gravitational origin of the weak interaction's chirality
- Gravity as the breakdown of conformal invariance
- Pure connection formalism for gravity: Feynman rules and the graviton-graviton scattering
- Scattering amplitudes in affine gravity
- Turning on gravity with the Higgs mechanism
- Pure Connection Formalism for Gravity: Linearized Theory
- Pure Connection Formulation, Twistors and the Chase for a Twistor Action for General Relativity
- Spin connection formulations of real Lorentzian General Relativity
- Pure connection gravity at one loop: Instanton background
- GR uniqueness and deformations
- Quantum cosmology of pure connection general relativity
- Gravity, Cartan geometry, and idealized waywisers
- Bi-gravity with a single graviton
- Anti-self-dual gravity and supergravity from a pure connection formulation
- An introduction to the physics of Cartan gravity
- Gravitons and a complex of differential operators
- Life of cosmological perturbations in MDR models, and the prospect of travelling primordial gravitational waves
- Fermions via spinor-valued one-forms
- Unimodular Plebański Gravity
- Mapping between the classical and pseudoclassical models of a relativistic spinning particle in external bosonic and fermionic fields. II
- Graviton scattering amplitudes and Pure Connection Formulation of GR
- From Special Relativity to embedded generators in Cartan subalgebras of rank-4 spin algebras