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General covariance, new variables, and dynamics without dynamics

Viqar Husain, Karel V. Kuchař

Open publisher page 79 citations

Abstract

We give an example of a generally covariant geometric field theory which leads to the standard Gaussian and supermomentum constraints but which lacks the super-Hamiltonian constraint. This theory is closely linked to Ashtekar's canonical formulation of general relativity. We discuss the Dirac constraint quantization of our model and comment on the issues which it raises regarding the quantization of generally covariant systems.

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What this paper is about

We give an example of a generally covariant geometric field theory which leads to the standard Gaussian and supermomentum constraints but which lacks the super-Hamiltonian constraint. This theory is closely linked to Ashtekar's canonical formulation of general relativity. We discuss the Dirac constraint quantization of our model and comment on the issues which it raises regarding the quantization of generally covariant systems.

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OpenAlex reports 79 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We give an example of a generally covariant geometric field theory which leads to the standard Gaussian and supermomentum constraints but which lacks the super-Hamiltonian constraint. This theory is closely linked to Ashtekar's canonical formulation of general relativity. We discuss the Dirac constraint quantization of our model and comment on the issues which it raises regarding the quantization of generally covariant systems.

Key concepts: Covariant transformation, General covariance, Covariance, General relativity, Gaussian, Quantization (signal processing), Constraint (computer-aided design), Physics

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