Observational Constraints on Anisotropic Cosmology Through the Deceleration Parameter in Saez–Ballester Theory

IF 1.2 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS Gravitation and Cosmology Pub Date : 2024-11-22 DOI:10.1134/S0202289324700403
Kangujam Priyokumar Singh, Asem Jotin Meitei
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Abstract

We explore the cosmological tests of the deceleration parameter \(q=K-\gamma/H\), where \(K\) and \(\gamma\) are arbitrary constants in a Bianchi type-III cosmological model in the framework of the Saez–Ballester theory of gravitation. Under the assumption that the shear scalar (\(\sigma\)) is proportional to the expansion scalar (\(\theta\)), we evaluate the physical and kinematic parameters, the jerk parameter, and the deceleration parameter (DP) in the early deceleration phase \((q>0)\) and the current acceleration phase \((q<0)\). The energy conditions and the \(Om(z)\) analysis for our spatially homogeneous and anisotropic Bianchi type-III model are discussed in details. Furthermore, we perform a \(\chi^{2}\) test to obtain the best fit values of the model parameters in the derived model by using \(46\,H(z)\) data sets in the redshift range \(0\leq z\leq 2.36\) and also analyze the present age of the universe.

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通过塞兹-巴勒斯特理论中的减速参数对各向异性宇宙学的观测约束
我们在Saez-Ballester引力理论的框架内探索了一个Bianchi-III型宇宙学模型中减速参数(q=K-\gamma/H\)的宇宙学检验,其中\(K\)和\(\gamma\)是任意常数。在剪切标量(\(\sigma\))与膨胀标量(\(\theta\))成正比的假设下,我们评估了早期减速阶段(\((q>0)\)和当前加速阶段(\((q<0)\)的物理和运动参数、颠簸参数以及减速参数(DP)。我们详细讨论了空间均匀和各向异性的Bianchi-III型模型的能量条件和(Om(z))分析。此外,我们还利用红移范围内的(46\,H(z))数据集进行了(\(chi^{2}\)测试,以获得推导模型中模型参数的最佳拟合值,并分析了宇宙的现今年龄。
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来源期刊
Gravitation and Cosmology
Gravitation and Cosmology ASTRONOMY & ASTROPHYSICS-
CiteScore
1.70
自引率
22.20%
发文量
31
审稿时长
>12 weeks
期刊介绍: Gravitation and Cosmology is a peer-reviewed periodical, dealing with the full range of topics of gravitational physics and relativistic cosmology and published under the auspices of the Russian Gravitation Society and Peoples’ Friendship University of Russia. The journal publishes research papers, review articles and brief communications on the following fields: theoretical (classical and quantum) gravitation; relativistic astrophysics and cosmology, exact solutions and modern mathematical methods in gravitation and cosmology, including Lie groups, geometry and topology; unification theories including gravitation; fundamental physical constants and their possible variations; fundamental gravity experiments on Earth and in space; related topics. It also publishes selected old papers which have not lost their topicality but were previously published only in Russian and were not available to the worldwide research community
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