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Conservation of Gravitational Energy-Momentum and Inner Diffeomorphism Group Gauge Invariance
- Source :
- Journal of Modern Physics. :37-47
- Publication Year :
- 2013
- Publisher :
- Scientific Research Publishing, Inc., 2013.
-
Abstract
- Viewing gravitational energy momentum as equal by observation, but different in essence from inertial energy-momentum requires two different symmetries to account for their independent conservations—spacetime and inner translation invariance. Gauging the latter a generalization of non-Abelian gauge theories of compact Lie groups is developed resulting in the gauge theory of the non-compact group of volume-preserving diffeomorphisms of an inner Minkowski space M4. As usual the gauging requires the introduction of a covariant derivative, a gauge field and a field strength operator. An invariant and minimal gauge field Lagrangian is derived. The classical field dynamics and the conservation laws for the new gauge theory are developed. Finally, the theory’s Hamiltonian in the axial gauge is expressed by two times six unconstrained independent canonical variables obeying the usual Poisson brackets and the positivity of the Hamiltonian is related to a condition on the support of the gauge fields.
- Subjects :
- Physics
Introduction to gauge theory
High Energy Physics::Lattice
High Energy Physics::Phenomenology
BRST quantization
High Energy Physics::Theory
Hamiltonian lattice gauge theory
Supersymmetric gauge theory
Quantum electrodynamics
Gauge covariant derivative
Gauge anomaly
Mathematical physics
Gauge fixing
Gauge symmetry
Subjects
Details
- ISSN :
- 2153120X and 21531196
- Database :
- OpenAIRE
- Journal :
- Journal of Modern Physics
- Accession number :
- edsair.doi...........37428273e9d78d1ce12dd3b243580d18