Møller Energy-Momentum Complex of a Static Axially Symmetric Vacuum Space-Time
arXiv:gr-qc/0403039 · doi:10.1007/s10509-008-9797-4
Abstract
The energy and momentum densities associated with the Weyl metric are calculated using Møller's energy-momentum complex. These results are compared with the results obtained by using the energy-momentum complexes of Einstein, Landau and Lifshitz, Papapetrou and Bergmann. We show that the aforementioned different prescriptions and that of Møller do not give the same energy density, while give the same momentum density.
LATEX, 9 pages, no figures, an improved version, references added, corrections [Admin note: substantial overlap with gr-qc/0403097, gr-qc/0404108 , gr-qc/0303009 , hep-th/0311050 ]
References in corpus (4)
Cited by in corpus (5)
- On the energy of charged black holes in generalized dilaton-axion gravity
- The Energy of Regular Black Hole in General Relativity Coupled to Nonlinear Electrodynamics
- Moeller's Energy-Momentum Complex for a Spacetime Geometry on a Noncommutative Curved D3-Brane
- Energy and Momentum densities of cosmological models, with equation of state , in general relativity and teleparallel gravity
- Conserving Integrals in [Non-]Metric Theories of Gravitation