论文标题
宇宙混蛋参数在对称触发宇宙学中
Cosmic jerk parameter in symmetric teleparallel cosmology
论文作者
论文摘要
在本文中,我们研究了最近提出的修改的对称触发性重力,其中重力lagangian由非金属标量表$ q $的任意函数给出。我们考虑了表达哈勃速率的恒定混蛋参数。此外,我们已经使用了31点OHD数据集和1701点万神殿+数据集来通过马尔可夫链蒙特卡洛分析来限制我们的模型参数。与观察值相比,获得的平均值和最佳拟合可产生一致的哈勃速率和减速参数。为了研究宇宙流体作为完美流体的当前宇宙的加速膨胀情景,我们考虑了两种形式的远期引力。我们已经使用$ f(q)$模型的建议形式研究了所获得的场方程,特别是线性$ f \ left(q \ right)=αq+β$和非线性$ f \ left(q \ right)= q+mq^{n} $模型。接下来,我们讨论了两个模型的宇宙学参数的物理行为,例如能量密度,压力,EOS参数和减速参数。为了确保我们提出的宇宙学模型的有效性,我们检查了所有能量条件。这些参数的属性确认我们的模型描述了宇宙扩展的当前加速度。能源条件标准也证实了这一结果。最后,两个模型的EOS参数表明宇宙流体的行为就像典型的暗能量模型。
In this paper, we have examined the recently proposed modified symmetric teleparallel gravity, in which gravitational Lagrangian is given by an arbitrary function of non-metricity scalar $Q$. We have considered a constant jerk parameter to express the Hubble rate. Moreover, we have used 31 points of OHD datasets and 1701 points of Pantheon+ datasets to constraint our model parameters by means of the Markov Chain Monte Carlo analysis. The mean values and the best fit obtained give a consistent Hubble rate and deceleration parameter compared to the observation values. In order to study the current accelerated expansion scenario of the Universe with the presence of the cosmological fluid as a perfect fluid, we have considered two forms of teleparallel gravity. We have studied the obtained field equations with the proposed forms of $f(Q)$ models, specifically, linear $f\left( Q\right) =αQ+β$ and non-linear $f\left( Q\right) =Q+mQ^{n}$ models. Next, we have discussed the physical behavior of cosmological parameters such as energy density, pressure, EoS parameter, and deceleration parameter for both model. To ensure the validity of our proposed cosmological models, we have checked all energy conditions. The properties of these parameters confirm that our models describe the current acceleration of the expansion of the Universe. This result is also corroborated by the energy conditions criteria. the Finally, the EoS parameter for both models indicates that the cosmological fluid behaves like a quintessence dark energy model.