Frequently asked questions about Shape Dynamics
arXiv:1211.5878 · doi:10.1007/s10701-013-9754-0
Abstract
Barbour's interpretation of Mach's principle led him to postulate that gravity should be formulated as a dynamical theory of spatial conformal geometry, or in his terminology, "shapes." Recently, it was shown that the dynamics of General Relativity can indeed be formulated as the dynamics of shapes. This new Shape Dynamics theory, unlike earlier proposals by Barbour and his collaborators, implements local spatial conformal invariance as a gauge symmetry that replaces refoliation invariance in General Relativity. It is the purpose of this paper to answer frequent questions about (new) Shape Dynamics, such as its relation to Poincaré invariance, General Relativity, Constant Mean (extrinsic) Curvature gauge, earlier Shape Dynamics, and finally the conformal approach to the initial value problem of General Relativity. Some of these relations can be clarified by considering a simple model: free electrodynamics and its dual shift symmetric formulation. This model also serves as an example where symmetry trading is used for usual gauge theories.
22 pages
References in corpus (9)
- 3+1 Formalism and Bases of Numerical Relativity
- Einstein gravity as a 3D conformally invariant theory
- AdS/CFT correspondence and Geometry
- A Birkhoff theorem for Shape Dynamics
- Conformal Superspace: the configuration space of general relativity
- Poincaré invariance and asymptotic flatness in Shape Dynamics
- Shape dynamics and Mach's principles: Gravity from conformal geometrodynamics
- Symmetry Doubling: Doubly General Relativity
- Shape Dynamics and Effective Field Theory
Cited by in corpus (17)
- Dynamical Similarity
- Classical Machian Resolution of the Spacetime Reconstruction Problem
- Poincaré invariance and asymptotic flatness in Shape Dynamics
- Underdetermination in Classic and Modern Tests of General Relativity
- Leibnizian relationalism for general relativistic physics
- Conformal geometrodynamics regained: gravity from duality
- Problem of Time: Facets and Machian Strategy
- Lorentz Invariance in Shape Dynamics
- The Firewall Paradox
- A construction principle for ADM-type theories in maximal slicing gauge
- Intrinsic time in Geometrodynamics: introduction and application to Friedmann cosmology
- Quantum Inflation of Classical Shapes
- Scale Invariance in Gravity On The Light-Front
- On the Geometric Quantization of Canonical Gravity
- General Relativity and Background Independence
- Against the disappearance of spacetime in quantum gravity
- A Tour Through Shape Dynamic Black Holes