论文标题
$ f(r)$ - flrw宇宙学重力的扰动方法
Perturbative approach to $f(R)$-gravitation in FLRW cosmology
论文作者
论文摘要
$ f(r)$引力理论围绕着宇宙常数(\ text {$λ$} cdm模型)的相对论的一般理论开发。结果,可以使用任意但定义明确的任何模型使用的一般显式宇宙学解决方案($ f(r)$函数(仅满足给定的扰动条件)。该扰动解决方案显示了哈勃参数$ h(t)$如何取决于时间(以及宇宙常数和物质密度)以适应宇宙的演变。为了说明,这种方法应用于某些特定的测试模型。这些模型之一似乎更现实,因为它可以描述宇宙进化的三个阶段。 尽管将扰动用于平坦的FLWR几何形状(根据当前的宇宙学观察结果)表明,所获得的解决方案主要描述后期宇宙的演变,但它也可能适用于早期宇宙。在下一步中,可以使用更通用的FLRW几何形状将当前方法应用于情况,以提高宇宙演化中不同阶段的描述的精度。 最后,结果表明,在宇宙的进化时,扰动$ f(r)$ - 理论可以被视为有效的gr,其宇宙常数$λ$被有效参数$λ_{eff} [ρ(t)] $代替。这种技巧导致了一种更简单的方法来解决$ f(r)$ - 理论无论其特定形式如何。
The $f(R)$ theory of gravitation developed perturbatively around the general theory of relativity with cosmological constant (the \text{$Λ$}CDM model) in a flat FLWR geometry is considered. As a result, a general explicit cosmological solution that can be used for any model with an arbitrary, but well-defined, $f(R)$ function (just satisfying given perturbation conditions) is derived. This perturbative solution shows how the Hubble parameter $H (t)$ depends on time (along with the cosmological constant and the matter density) to adapt to the evolution of the Universe. To illustrate, this approach is applied to some specific test models. One of these models appears to be more realistic as it could describe three phases of the Universe's evolution. Despite the fact that the perturbation is applied for a flat FLWR geometry (according to the current cosmological observation) indicates that the obtained solution can mainly describe the evolution of the late Universe, it may also work for an early Universe. As a next step, the present method can be applied to the case with a more general FLRW geometry to increase the precision of the description of different stages in the evolution of the Universe. Finally, it is shown that in a desription of the Universe's evolution the perturbative $f(R)$-theory can be considered as an effective GR with the cosmological constant $Λ$ replaced by an effective parameter $ Λ_{eff}[ρ(t)] $. This trick leads to a simpler way of solving an $f(R)$-theory regardless its specific form.