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首页> 外文期刊>International Journal of Theoretical Physics: A Journal of Original Research and Reviews in Theoretical Physics and Related Mathematics, Dedicated to the Unification of Physics >Some exact Bianchi type-V perfect fluid cosmological models with heat flow and decaying vacuum energy density Λ: Expressions for some observable quantities
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Some exact Bianchi type-V perfect fluid cosmological models with heat flow and decaying vacuum energy density Λ: Expressions for some observable quantities

机译:具有热流和衰减的真空能密度的精确的Bianchi V型完美流体宇宙学模型Λ:一些可观测量的表达式

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In this paper we have obtained some new exact solutions of Einstein's field equations in a spatially homogeneous and anisotropic Bianchi type-V space-time with perfect fluid distribution along with heat-conduction and decaying vacuum energy density Λ by applying the variation law for generalized Hubble's parameter that yields a constant value of deceleration parameter. We find that the constant value of deceleration parameter is reasonable for the present day universe. The variation law for Hubble's parameter generates two types of solutions for the average scale factor, one is of power-law type and other is of the exponential form. Using these two forms, Einstein's field equations are solved separately that correspond to expanding singular and non-singular models of the universe respectively. The cosmological constant Λ is found to be a decreasing function of time and positive which is corroborated by results from recent supernovae Ia observations. Expressions for lookback time-redshift, neoclassical tests (proper distance d(z)), luminosity distance red-shift and event horizon are derived and their significance are described in detail. The physical and geometric properties of spatially homogeneous and anisotropic cosmological models are discussed.
机译:在本文中,我们通过应用广义哈勃方程的变分定律,获得了在空间均匀且各向异性的Bianchi V型时空中具有完美流体分布以及导热和衰减真空能密度Λ的爱因斯坦场方程的一些新的精确解。产生恒定减速参数的参数。我们发现,减速参数的常数值对于当今宇宙是合理的。哈勃参数的变化定律为平均比例因子生成两种类型的解,一种是幂律型,另一种是指数形式。使用这两种形式,爱因斯坦的场方程分别求解,分别对应于扩展的宇宙奇异模型和非奇异模型。发现宇宙常数Λ是时间和正的递减函数,最近的超新星Ia观测结果证实了这一结论。推导了回溯时间红移,新古典检验(适当距离d(z)),光度距离红移和事件范围的表达式,并详细说明了它们的意义。讨论了空间均匀和各向异性宇宙学模型的物理和几何特性。

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