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On the Energy-Momentum Problem in Static Einstein Universe |
S. Aygün 1,3;I. Tarhan 1,3; H. Baysal 2,3 |
1 Department of Physics, Art and Science Faculty, Terziolu Campus, anakkale Onsekiz Mart University, 17020 Çanakkale, Turkey
2 Department of Secondary Science and Mathematics Education, Education Faculty, Çanakkale Onsekiz Mart University, 17100 Çanakkale, Turkey
3 Institute of Theoretical and Applied Physics, Turunç-Marmaris, Turkey |
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Cite this article: |
S. Ayg
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Abstract The energy-momentum distributions of Einstein's simplest static geometrical model for an isotropic and homogeneous universe are evaluated. For this purpose, Einstein, Bergmann--Thomson, Landau--Lifshitz (LL), Moller and Papapetrou energy-momentum complexes are used in general relativity. While Einstein and Bergmann--Thomson complexes give exactly the same results, LL and Papapetrou energy-momentum complexes do not provide the same energy densities. The Moller energy-momentum density is found to be zero everywhere in Einstein's universe. Also, several spacetimes are the limiting cases considered here.
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Keywords:
04.20.Cv
04.20.+q
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Received: 13 October 2006
Published: 24 February 2007
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