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Holographic Dark Energy Model With Time Varying Deceleration Parameter

机译:时变减速参数的全息暗能量模型

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Two minimally interacting fluids; dark matter and holographic dark energy components has been studied in a spatially homogeneous and anisotropic Bianchi type-I space-time. The solutions of the Einstein’s field equations are obtained under the assumption of time varying deceleration parameter (Abdussattar and S. Prajapati, Astrophys. Space Sci. 331, 65, 2011) which represents transition of the universe from the early decelerating phase to the recent accelerating phase. It is shown that for large expansion the model reduces to model while for suitable choice of interaction between dark matter and holographic dark energy the anisotropy parameter of the universe approaches to zero for large cosmic time and the coincidence parameter increases with increase in time. Allowing for time dependent deceleration parameter the solutions of the field equations and some physical and geometric properties of the model along with physical acceptability of the solutions have also been discussed in details.
机译:两种相互作用最小的流体;暗物质和全息暗能量成分已在空间均匀且各向异性的Bianchi I型时空中进行了研究。爱因斯坦场方程的解是在时变减速参数(Abdussattar和S.Prajapati,Astrophys.Space Sci.331,65,2011)的假设下获得的,该参数代表了宇宙从早期减速阶段到最近加速阶段的转变。相。据表明,对于大的膨胀而暗物质和全息暗能量之间的相互作用的适当选择宇宙的各向异性参数接近零为大宇宙时间,并与时间的增加重合参数增加的模型简化为模型。考虑到时间相关的减速参数,还详细讨论了场方程的解以及模型的某些物理和几何特性以及解的物理可接受性。

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