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Exact solutions of embedding the four-dimensional perfect fluid in a five- or higher-dimensional Einstein spacetime and the cosmological interpretations
Authors:Jie Ren  Xin-He Meng  Liu Zhao
Affiliation:1. Theoretical Physics Division, Chern Institute of Mathematics, Nankai University, Tianjin 300071, China;2. Department of Physics, Nankai University, Tianjin 300071, China;3. BK21 Division of Advanced Research and Education in Physics, Hanyang University, Seoul 133-791, Republic of Korea;4. Kavli Institute for Theoretical Physics China at the Chinese Academy of Sciences (KITPC-CAS), Beijing 100080, China
Abstract:We investigate an exact solution that describes the embedding of the four-dimensional (4D) perfect fluid in a five-dimensional (5D) Einstein spacetime. The effective metric of the 4D perfect fluid as a hypersurface with induced matter is equivalent to the Robertson–Walker metric of cosmology. This general solution shows interconnections among many 5D solutions, such as the solution in the braneworld scenario and the topological black hole with cosmological constant. If the 5D cosmological constant is positive, the metric periodically depends on the extra dimension. Thus we can compactify the extra dimension on S1S1 and study the phenomenological issues. We also generalize the metric ansatz to the higher-dimensional case, in which the 4D part of the Einstein equations can be reduced to a linear equation.
Keywords:98.80.Jk   04.50.-h   04.20.Jb
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