ADM-like Hamiltonian formulation of gravity in the teleparallel geometry: derivation of constraint algebra
arXiv:1309.4685 · doi:10.1007/s10714-013-1636-4
Abstract
We derive a new constraint algebra for a Hamiltonian formulation of the Teleparallel Equivalent of General Relativity treated as a theory of cotetrad fields on a spacetime. The algebra turns out to be closed.
50 pages, LaTeX2e. The original 73 page paper arXiv:1111.5498v1 was revised and divided into two parts. The present paper is the second part of the original one (the first part is available as arXiv:1111.5498v2)
References in corpus (6)
- Hamiltonian formulation of unimodular gravity in the teleparallel geometry
- ADM-like Hamiltonian formulation of gravity in the teleparallel geometry
- Kinematic quantum states for the Teleparallel Equivalent of General Relativity
- Hamiltonian formulation of a simple theory of the teleparallel geometry
- Variables suitable for constructing quantum states for the Teleparallel Equivalent of General Relativity II
- Variables suitable for constructing quantum states for the Teleparallel Equivalent of General Relativity I
Cited by in corpus (17)
- Teleparallel Gravity: From Theory to Cosmology
- Hamiltonian and primary constraints of new general relativity
- Review of the Hamiltonian analysis in teleparallel gravity
- Hamiltonian formulation of teleparallel gravity
- ADM-like Hamiltonian formulation of gravity in the teleparallel geometry
- Classification of primary constraints for new general relativity in the premetric approach
- Revisiting Stability in New General Relativity
- Variables suitable for constructing quantum states for the Teleparallel Equivalent of General Relativity II
- Teleparallel bigravity
- Hamiltonian of new general relativity using differential forms
- The generalization of the ADM gravitational energy-momentum
- Hamiltonian Analysis In New General Relativity
- The Hamiltonian constraint in the symmetric teleparallel equivalent of general relativity
- Constraints of the Teleparallel Equivalent of General Relativity in a gauge
- The Einstein constraints and differential forms
- Gravitational energy in pp-wave spacetimes
- A Quantum Informational Approach to the Problem of Time