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FRW cosmological models in Brans-Dicke theory of gravity with variable q and dynamical Lambda-term

机译:具有可变q和动态Lambda项的Brans-Dicke引力理论中的FRW宇宙学模型

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Exact solution of modified Einstein's field equations are considered within the scope of spatially homogeneous and isotropic Fraidmann-Robertson-Walker (FRW) space-time filled with perfect fluid in the frame work of Brans-Dicke scalar-tensor theory of gravity. In this paper we have investigated the flat, open and closed FRW models and the effect of dynamic cosmological term on the evolution of the universe. Two types of FRW cosmological models are obtained by setting the power law between the scalar field phi and the scale factor a and deceleration parameter (DP) q as a time dependent. The concept of time dependent DP with some proper assumptions yield two type of the average scale factors (i) a(t) = [sinh(alpha t)](1) and (ii) a(t) = [t(alpha)e(t)](1), alpha and n not equal 0 are arbitrary constants. In case (i), for 0 < n <= 1, it generates a class of accelerating models while for n > 1, the models of the universe exhibit phase transition from early decelerating to present accelerating phase and the transition redshift z(t) has been calculated and found to be in good agreement with the results from recent astrophysical observations. In case (ii), for n <= 2 and alpha = 1, we obtain a class of transit models of the universe from early decelerating to present accelerating phase. Taking into consideration the observational data, we conclude that the cosmological constant behaves as a positive decreasing function of time. The physical and geometric properties of the models are also discussed with the help of graphical presentations.
机译:在Brans-Dicke标量-张量引力理论的框架中,在充满均质流体的空间均匀且各向同性的Fraidmann-Robertson-Walker(FRW)时空范围内,考虑了修改后的爱因斯坦场方程的精确解。在本文中,我们研究了平面,开放和封闭的FRW模型以及动态宇宙学术语对宇宙演化的影响。通过将标量场phi与比例因子a和减速度参数(DP)q之间的幂律设置为时间依赖关系,可以获得两种类型的FRW宇宙学模型。具有一些适当假设的时间相关DP的概念产生两种类型的平均比例因子(i)a(t)= [sinh(alpha t)](1 / n)和(ii)a(t)= [t( alpha)e(t)](1 / n),α和不等于0的n是任意常数。在情况(i)中,对于0 1,则宇宙模型将呈现出从早期减速到当前加速阶段的相变以及过渡红移z(t)经过计算,发现与最近的天体物理观测结果十分吻合。在情况(ii)中,对于n <= 2和alpha = 1,我们获得了从早期减速到当前加速阶段的一类宇宙过渡模型。考虑到观测数据,我们得出结论,宇宙常数表现为时间的正下降函数。模型的物理和几何特性还通过图形表示进行了讨论。

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