Relational Observables in Gravity: a Review
We present an overview on relational observables in gravity mainly from a loop quantum gravity perspective. The gauge group of general relativity is the diffeomorphism group of the underlying manifold. Consequently, general relativity is a totally constrained theory with vanishing canonical Hamilton...
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National Academy of Science of Ukraine
2012-03-01
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doaj-c121d78eb9a94f00a7d04186c91470dc2020-11-24T22:55:14ZengNational Academy of Science of UkraineSymmetry, Integrability and Geometry: Methods and Applications1815-06592012-03-018017Relational Observables in Gravity: a ReviewJohannes TamborninoWe present an overview on relational observables in gravity mainly from a loop quantum gravity perspective. The gauge group of general relativity is the diffeomorphism group of the underlying manifold. Consequently, general relativity is a totally constrained theory with vanishing canonical Hamiltonian. This fact, often referred to as the problem of time, provides the main conceptual difficulty towards the construction of gauge-invariant local observables. Nevertheless, within the framework of complete observables, that encode relations between dynamical fields, progress has been made during the last 20 years. Although analytic control over observables for full gravity is still lacking, perturbative calculations have been performed and within de-parameterizable toy models it was possible for the first time to construct a full set of gauge invariant observables for a background independent field theory. We review these developments and comment on their implications for quantum gravity.http://dx.doi.org/10.3842/SIGMA.2012.017Dirac observablesquantum gravityproblem of timegauge invariance |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Johannes Tambornino |
spellingShingle |
Johannes Tambornino Relational Observables in Gravity: a Review Symmetry, Integrability and Geometry: Methods and Applications Dirac observables quantum gravity problem of time gauge invariance |
author_facet |
Johannes Tambornino |
author_sort |
Johannes Tambornino |
title |
Relational Observables in Gravity: a Review |
title_short |
Relational Observables in Gravity: a Review |
title_full |
Relational Observables in Gravity: a Review |
title_fullStr |
Relational Observables in Gravity: a Review |
title_full_unstemmed |
Relational Observables in Gravity: a Review |
title_sort |
relational observables in gravity: a review |
publisher |
National Academy of Science of Ukraine |
series |
Symmetry, Integrability and Geometry: Methods and Applications |
issn |
1815-0659 |
publishDate |
2012-03-01 |
description |
We present an overview on relational observables in gravity mainly from a loop quantum gravity perspective. The gauge group of general relativity is the diffeomorphism group of the underlying manifold. Consequently, general relativity is a totally constrained theory with vanishing canonical Hamiltonian. This fact, often referred to as the problem of time, provides the main conceptual difficulty towards the construction of gauge-invariant local observables. Nevertheless, within the framework of complete observables, that encode relations between dynamical fields, progress has been made during the last 20 years. Although analytic control over observables for full gravity is still lacking, perturbative calculations have been performed and within de-parameterizable toy models it was possible for the first time to construct a full set of gauge invariant observables for a background independent field theory. We review these developments and comment on their implications for quantum gravity. |
topic |
Dirac observables quantum gravity problem of time gauge invariance |
url |
http://dx.doi.org/10.3842/SIGMA.2012.017 |
work_keys_str_mv |
AT johannestambornino relationalobservablesingravityareview |
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