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Mφller Energy-Momentum Complex in General Relativity for Higher Dimensional Universes
引用本文:M. Aygiin S. Aygiin i. Yflmaz H. Baysal i. Tarhan. Mφller Energy-Momentum Complex in General Relativity for Higher Dimensional Universes[J]. 中国物理快报, 2007, 24(7): 1821-1824
作者姓名:M. Aygiin S. Aygiin i. Yflmaz H. Baysal i. Tarhan
作者单位:[1]Department of Physics, Art and Science Faculty, Canakkale Onsekiz Mart University, 17020 Canakkale, Thrkey [2]Department of Secondary Science and Mathematics Education, Faculty of Education,~anakkale Onsekiz Mart University, 17100 Canakkale, Turkey
摘    要:Using the Mφ11er energy-momentum definition in general relativity (GR) we calculate the total energy-momentum distribution associated with (n 4- 2)-dimensional homogeneous and isotropic model of the universe. It is found that total energy of M~ller is vanishing in (n 4- 2) dimensions everywhere but n-momentum components of Mφ11er in (n 4- 2) dimensions are different from zero. Also, we evaluate the static Einstein Universe, FRW universe and de Sitter universe in four dimensions by using (n 4- 2)-type metric, then calculate the Mφ11er energy-momentum distribution of these spacetimes. However, our results are consistent with the results of Banerjee and Sen, Xulu, Radinschi, Vargas, Cooperstock-Israelit, A ygiin et al., Rosen, and Johri et al. in four dimensions.

关 键 词:能量动量 宇宙 粒子 物理学
收稿时间:2007-02-01
修稿时间:2007-02-11

Moller Energy--Momentum Complex in General Relativity for Higher Dimensional Universes
M. Aygun,S. Aygun,.I.Yilmaz,H. Baysal,.I. Tarhan. Moller Energy--Momentum Complex in General Relativity for Higher Dimensional Universes[J]. Chinese Physics Letters, 2007, 24(7): 1821-1824
Authors:M. Aygun  S. Aygun  .I.Yilmaz  H. Baysal  .I. Tarhan
Affiliation:Department of Physics, Art and Science Faculty, Canakkale Onsekiz Mart University, 17020 Canakkale, TurkeyDepartment of Secondary Science and Mathematics Education, Facultyof Education,Canakkale Onsekiz Mart University, 17100 Canakkale, Turkey
Abstract:Using the Moller energy--momentum definition in general relativity(GR) we calculate the total energy--momentum distribution associated with (n+2)-dimensional homogeneous and isotropic model of the universe. It is found that total energy of Moller is vanishing in (n+2) dimensions everywhere but n-momentum components of Moller in (n+2) dimensions are different from zero. Also, we evaluate the static Einstein Universe, FRW universe and de Sitter universe in four dimensions by using (n+2)-type metric, then calculate the Moller energy--momentum distribution of these spacetimes. However, our results are consistent with the results of Banerjee and Sen, Xulu, Radinschi,Vargas, Cooperstock-Israelit, Aygun et al., Rosen, and Johri et al. in four dimensions.
Keywords:04.20.Cv  04.20.+q  04.50.+h
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