Relativity without relativity
arXiv:gr-qc/0012089 · doi:10.1088/0264-9381/19/12/308
Abstract
We give a derivation of general relativity and the gauge principle that is novel in presupposing neither spacetime nor the relativity principle. We consider a class of actions defined on superspace with two key properties. The first is 3-coordinate invariance. This is the only postulated symmetry, and it leads to the standard momentum constraint. The second property is that the Lagrangian is constructed from a `local' square root of an expression quadratic in the velocities, `local' because it is taken before integration over 3-space. It gives rise to quadratic constraints that do not correspond to any symmetry and are not, in general, propagated by the Euler-Lagrange equations. Therefore these actions are internally inconsistent. Only one action of this form is well behaved: the Baierlein-Sharp-Wheeler reparametrisation-invariant action for GR. From this viewpoint, spacetime symmetry is emergent. It appears as a `hidden' symmetry in the (underdetermined) solutions of the evolution equations, without being manifestly coded into the action itself. In addition, propagation of the constraints acts as a striking selection mechanism beyond pure gravity. If a scalar field is included in the configuration space, it must have the same characteristic speed as gravity. Thus Einstein causality emerges. Finally, self-consistency requires that any 3-vector field must satisfy Einstein causality, the equivalence principle and, in addition, the Gauss constraint. Therefore we recover the standard (massless) Maxwell equations.
minor revisions, accepted for publication by Classical and Quantum Gravity
References in corpus (2)
Cited by in corpus (78)
- Problem of Time in Quantum Gravity
- A dynamical inconsistency of Horava gravity
- The physical gravitational degrees of freedom
- The Superspace of Geometrodynamics
- Scale-Invariant Gravity: Particle Dynamics
- Scale-Invariant Gravity: Geometrodynamics
- Beables/Observables in Classical and Quantum Gravity
- The Observer's Ghost: a field-space connection-form and its application to gauge theories and general relativity
- Foundations of Relational Particle Dynamics
- A First Class Constraint Generates Not a Gauge Transformation, But a Bad Physical Change: The Case of Electromagnetism
- A Shape Dynamics Tutorial
- Emergent Semiclassical Time in Quantum Gravity. I. Mechanical Models
- Problem of Time and Background Independence: the Individual Facets
- New interpretation of variational principles for gauge theories. I. Cyclic coordinate alternative to ADM split
- Interacting vector fields in Relativity without Relativity
- Dynamics of Pure Shape, Relativity and the Problem of Time
- Triangleland. I. Classical dynamics with exchange of relative angular momentum
- Variations on the Seventh Route to Relativity
- The Definition of Mach's Principle
- Relational Particle Models. II. Use as toy models for quantum geometrodynamics
- Relational Particle Models. I. Reconciliation with standard classical and quantum theory
- Records Theory
- Spatially Covariant Theories of a Transverse, Traceless Graviton, Part I: Formalism
- A Gravitational Origin of the Arrows of Time
- Approaching the Problem of Time with a Combined Semiclassical-Records-Histories Scheme
- Emergent Semiclassical Time in Quantum Gravity. Full Geometrodynamics and Minisuperspace Examples
- Intrinsic time gravity and the Lichnerowicz-York equation
- Triangleland. II. Quantum Mechanics of Pure Shape
- On the Origin of Gravitational Lorentz Covariance
- Spatially covariant gravity with two degrees of freedom: perturbative analysis
- Classical dynamics on triangleland
- Hamiltonian analysis of non-projectable modified F(R) Hořava-Lifshitz gravity
- Reassessing the problem of time of quantum gravity
- Jacobi's Principle and the Disappearance of Time
- Decoupling of the re-parametrization degree of freedom and a generalized probability in quantum cosmology
- Cosmology as Relativistic Particle Mechanics: From Big Crunch to Big Bang
- Shape dynamics and Mach's principles: Gravity from conformal geometrodynamics
- On the Semiclassical Approach to Quantum Cosmology
- A Definition of Background Independence
- Stochastic Emergent Quantum Gravity
- Quantum Motion on Shape Space and the Gauge Dependent Emergence of Dynamics and Probability in Absolute Space and Time
- Gravity from the extension of spatial diffeomorphisms
- Minisuperspace model of Machian Resolution of Problem of Time. I. Isotropic Case
- Gauge Theory in Riem(M)
- Origin of Structure in the Universe: Quantum Cosmology Reconsidered
- Conformal geometrodynamics regained: gravity from duality
- Quantum Machian Time in Toy Models of Gravity
- Implementing Mach's Principle Using Gauge Theory
- Relationalism about mechanics based on a minimalist ontology of matter
- Relational Motivation for Conformal Operator Ordering in Quantum Cosmology
- Quantum Cosmological Metroland Model
- Machian Classical and Semiclassical Emergent Time
- Shape Dynamics and Effective Field Theory
- Problem of Time: Facets and Machian Strategy
- Gravitational collapse of thin shells of dust in asymptotically flat Shape Dynamics
- Shape Space Methods for Quantum Cosmological Triangleland
- The shape dynamics description of gravity
- Dust and Radiation Quantum Perfect Fluid Cosmology : Selection of Time Variable
- Gravitational Collapse via Wheeler-DeWitt Equation
- Wheeler-DeWitt equation and the late gravitational collapse: effects of factor ordering and the tunneling scenario
- Quantum Cosmological Relational Model of Shape and Scale in 1-d
- A First-Principles Implementation of Scale Invariance Using Best Matching
- Constrained metric variations and emergent equilibrium surfaces
- How General Relativity and Lorentz Covariance Arise from the Spatially Covariant Effective Field Theory of the Transverse, Traceless Graviton
- A Novel Approach to Quantum Gravity in the Presence of Matter without the Problem of Time
- A construction principle for ADM-type theories in maximal slicing gauge
- Gravitation and cosmology with York time
- Quantum Mechanics on Spacetime I: Spacetime State Realism
- On the recovery of geometrodynamics from two different sets of first principles
- Cosmological perturbation theory with York time
- Towards the Unification of Gravity and other Interactions: What has been Missed?
- The fundamental importance of discourse in theoretical physics
- Time-covariant Schrödinger equation and invariant decay probability: The -Kantowski-Sachs universe
- The Canonical Lagrangian Approach To Three-Space General Relativity
- On the Geometric Quantization of Canonical Gravity
- Problem of Time in Slightly Inhomogeneous Cosmology
- Huygens-Fresnel Principle in Superspace
- Relational Quadrilateralland. II. The Quantum Theory