Interacting Holographic Dark Energy, Future Singularity and Polytropic Gas Model of Dark Energy in Closed FRW Universe

被引:8
作者
Sarkar, Sanjay [1 ]
机构
[1] Kaziranga English Acad, Dept Math, Garchuk 35, Guwahati, India
关键词
FRW line element; Holographic dark energy; Polytropic gas; Wormhole; Big trip and big rip; INFRARED CUTOFF; CONSTRAINTS; MATTER; DECELERATION; DYNAMICS; EQUATION; LAMBDA;
D O I
10.1007/s10773-015-2682-3
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The present work deals with the accretion of two interacting fluids: dark matter and a hypothetical fluid as the holographic dark energy components onto wormhole in a non-flat FRW universe. First of all, following Cruz et al. (Phys. Lett. B 669, 271 2008), we obtained an exact solution of the Einstein's field equations. Solution describes effectively the actual acceleration and indicates a big rip type future singularity of the universe. After that we have studied the evolution of the mass of wormhole embedded in this FRW universe in order to reproduce a stable universe protected against future-time singularity. We found that the accretion of these dark components leads to a gradual increase of wormhole mass. It is also observed that contrary to the case as shown by Cruz et al. (Phys. Lett. B 669, 271 2008), the big rip singularity of the universe with a divergent Hubble parameter of this dark energy model may be avoided by a big trip. We have established a correspondence between the holographic dark energy with the polytropic gas dark energy model and obtained the potential as well as dynamics of the scalar field which describes the polytropic cosmology.
引用
收藏
页码:481 / 494
页数:14
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