Phase transition in Schwarzschild-de Sitter spacetime

被引:0
作者
D. Momeni
A. Azadi
机构
[1] University of Tehran,Department of Physics
来源
Astrophysics and Space Science | 2008年 / 317卷
关键词
Gravity; Dark energy; Dark matter; Scalar field; 98.80.-k; 95.35.+d; 95.36.+x;
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摘要
Using a static massive spherically symmetric scalar field coupled to gravity in the Schwarzschild-de Sitter (SdS) background, first we consider some asymptotic solutions near horizon and their local equations of state (E.O.S.) on them. We show that near cosmological and event horizons our scalar field behaves as a dust. At the next step near two pure de Sitter or Schwarzschild horizons we obtain a coupling dependent pressure to energy density ratio. In the case of a minimally coupling this ratio is −1 which springs to the mind thermodynamical behavior of dark energy. If having a negative pressure behavior near these horizons we concluded that the coupling constant must be ξ<¼. Therefore we derive a new constraint on the value of our coupling ξ. These two different behaviors of unique matter in the distinct regions of spacetime at present era can be interpreted as a phase transition from dark matter to dark energy in the cosmic scales and construct a unified scenario.
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页码:231 / 234
页数:3
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共 46 条
[1]  
Alcubierre M.(2002)undefined Class. Quantum Gravity 19 5017-undefined
[2]  
Guzman F.S.(1957)undefined Phys. Rev. 107 4-undefined
[3]  
Matos T.(2002)undefined Phys. Rev. D 66 043507-undefined
[4]  
Nunez D.(2003)undefined Phys. Lett. B 575 172-undefined
[5]  
Urena-Lopez L.A.(2002)undefined Phys. Lett. B 535 17-undefined
[6]  
Wiederhold P.(2002)undefined Phys. Lett. B 545 23-undefined
[7]  
Begmann O.(2004)undefined Phys. Rev. D 70 043539-undefined
[8]  
Leipnik R.(2000)undefined Phys. Rev. Lett. 85 1158-undefined
[9]  
Bento M.C.(2001)undefined Phys. Lett. B 511 265-undefined
[10]  
Bertolami O.(2004)undefined Astron. Astrophys. 421 71-undefined