Observables in classical canonical gravity: folklore demystified
arXiv:1001.2726 · doi:10.1088/1742-6596/222/1/012018
Abstract
We give an overview of some conceptual difficulties, sometimes called paradoxes, that have puzzled for years the physical interpetation of classical canonical gravity and, by extension, the canonical formulation of generally covariant theories. We identify these difficulties as stemming form some terminological misunderstandings as to what is meant by "gauge invariance", or what is understood classically by a "physical state". We make a thorough analysis of the issue and show that all purported paradoxes disappear when the right terminology is in place. Since this issue is connected with the search of observables - gauge invariant quantities - for these theories, we formally show that time evolving observables can be constructed for every observer. This construction relies on the fixation of the gauge freedom of diffeomorphism invariance by means of a scalar coordinatization. We stress the condition that the coordinatization must be made with scalars. As an example of our method for obtaining observables we discuss the case of the massive particle in AdS spacetime.
15 pages, To appear in Proceedings of 1st Mediterranean Conference on Classical and Quantum Gravity. Corrected minor typos
References in corpus (2)
Cited by in corpus (26)
- Change in Hamiltonian General Relativity from the Lack of a Time-like Killing Vector Field
- A First Class Constraint Generates Not a Gauge Transformation, But a Bad Physical Change: The Case of Electromagnetism
- Construction of quantum Dirac observables and the emergence of WKB time
- Bouncing Unitary Cosmology I: Mini-Superspace General Solution
- Towards a reduced phase space quantization in loop quantum cosmology with an inflationary potential
- Schrodinger Evolution for the Universe: Reparametrization
- Observations in Quantum Cosmology
- The constraints of post-quantum classical gravity
- Equivalent Theories Redefine Hamiltonian Observables to Exhibit Change in General Relativity
- Reassessing the problem of time of quantum gravity
- Quantum astrometric observables I: time delay in classical and quantum gravity
- Gauge Fixing and the Semiclassical Interpretation of Quantum Cosmology
- Gauge invariant canonical cosmological perturbation theory with geometrical clocks in extended phase space - a review and applications
- Relating dust reference models to conventional systems in manifestly gauge invariant perturbation theory
- Big Bang Singularity Resolution In Quantum Cosmology
- Equivalent Theories and Changing Hamiltonian Observables in General Relativity
- Quantum astrometric observables II: time delay in linearized quantum gravity
- What Are Observables in Hamiltonian Einstein-Maxwell Theory?
- Problem of Time: Facets and Machian Strategy
- Progress and Gravity: Overcoming Divisions between General Relativity and Particle Physics and between Physics and HPS
- GPS Observables in Newtonian Spacetime or Why We Do Not Need 'Physical' Coordinate Systems
- Emergent Time and Time Travel in Quantum Physics
- Quantisation, Representation and Reduction; How Should We Interpret the Quantum Hamiltonian Constraints of Canonical Gravity?
- Does a Second-Class Primary Constraint Generate a Gauge Transformation? Electromagnetisms and Gravities, Massless and Massive
- Quantum Gravity, Hydrodynamics and Emergent Cosmology: A Collection of Perspectives
- Gauge and Metaphysics of Spacetime