论文标题

在$ f(r,l_m)$ - 重力中建模过境深色能

Modeling Transit Dark Energy in $f(R, L_m)$-gravity

论文作者

Pradhan, Anirudh, Maurya, Dinesh Chandra, Goswami, Gopikant K., Beesham, Aroonkumar

论文摘要

本研究论文介绍了$ f(r,l_ {m})$ - 带有观察性约束的$ f(r,l_ {m})中的过境深色宇宙学模型。为此,我们考虑了一个平坦的FLRW时空,并在我们的野外方程中采用了类似宇宙的参数$β$。该模型具有两个能量参数〜$ω_{m0}〜和〜Ω_ {\ beta0} $,该} $,尤其是宇宙机理,尤其是其当前的加速阶段。为了使模型应对当前的观察场景,我们考虑了三种类型的观察数据集:$ 46 $ HUBBLE参数数据集,SNE IA $ 715 $距离模量和明显幅度的数据集,以及$ 40 $ $ 40 $的数据集,以edshift $ 0 \ 0 \ leq z <1.7 $ <1.7 $。我们通过应用$ r^{2} $和$χ^{2} $ - 在Hubble,距离模量和明显的幅度参数的观测值和理论值中测试来近似能量参数的当前值。另外,我们已经测量了commographic系数的近似当前值$ \ {h_ {0},q_ {0},j_ {0},s_ {0},l_ {0},m_ {0},m_ {0} \ \} $。发现我们近似基于价值的模型最适合观察模块。我们发现,作为$ t \ to \ to \ infty $(或$ z \ to 0 $),然后$ \ {q,j,s,s,l,m \} \ to \ { - 1,1,1,1,1,1,1,1 \} $。当前宇宙的宇宙时代也被近似,并达到了期望。我们的模型显示了过去加速宇宙的过境阶段,过去有一个减速,并且具有过渡点。

This research paper deals with a transit dark energy cosmological model in $f(R, L_{m})$-gravity with observational constraints. For this, we consider a flat FLRW space-time and have taken a cosmological cosntant-like parameter $β$ in our field equations. The model has two energy parameters~ $Ω_{m0}~ and~ Ω_{\beta0}$, which govern the mechanism of the universe, in particular its present accelerated phase. To make the model cope with the present observational scenario, we consider three types of observational data set: $46$ Hubble parameter data set, SNe Ia $715$ data sets of distance modulus and apparent magnitude, and $40$ datasets of SNe Ia Bined compilation in the redshift $0\leq z<1.7$. We have approximated the present values of the energy parameters by applying $R^{2}$ and $χ^{2}$-test in the observational and theoretical values of Hubble, distance modulus, and apparent magnitude parameters. Also, we have measured the approximate present values of cosmographic coefficients $\{H_{0}, q_{0}, j_{0}, s_{0}, l_{0}, m_{0}\}$. It is found that our approximated value-based model fits best with the observational module. We have found that as $t\to\infty$ (or $z\to 0$) then $\{q, j, s, l, m\}\to\{-1, 1, 1, 1, 1\}$. The cosmic age of the present universe is also approximated and comes up to the expectation. Our model shows a transit phase of the present accelerating universe with a deceleration in the past and has a transition point.

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