Study of Periodic Cosmic Evolution in Modified f(Q, T) Gravity Theory

IF 0.7 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
A. R. Lalke, G. P. Singh, B. K. Bishi
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引用次数: 0

Abstract

Finding a completely promising theory of gravitation that urges us to go beyond the general theory of relativity. One such approach is an extended class of symmetric teleparallel theory of gravity, namely f (Q, T ) gravity. In this work, we have explored the cosmological background of the flat FLRW universe within the framework of this theory. The cosmic transit phenomenon of the deceleration parameter is studied by employing periodic varying deceleration parameter and obtaining the exact solution of the highly non-linear field equations. The periodic scenario of cosmological models with two different Lagrangian forms of f (Q, T ) is analyzed, where the first form is linear and the second one is non-linear dependent on Q. The dynamical features of both the models, including the periodic behavior of the equation of state parameter are discussed. The self-stability and self-consistency of the derived models are tested by studying energy conditions. Additionally, the geometrical diagnostic validation of the model is also checked.

修正f(Q, T)引力理论中宇宙周期演化的研究
找到一个完全有希望的引力理论,促使我们超越广义相对论。其中一种方法是对称遥平行引力理论的扩展类,即f (Q, T)引力。在这项工作中,我们在这个理论的框架内探索了平坦的FLRW宇宙的宇宙学背景。采用周期变减速参数,得到高度非线性场方程的精确解,研究了减速参数的宇宙凌日现象。分析了具有f (Q, T)的两种不同拉格朗日形式的宇宙模型的周期情形,其中第一种形式是线性的,第二种形式是依赖于Q的非线性模型,讨论了两种模型的动力学特征,包括状态方程参数的周期行为。通过对能量条件的研究,验证了模型的自稳定性和自一致性。此外,还对模型的几何诊断有效性进行了验证。
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来源期刊
Astrophysics
Astrophysics 地学天文-天文与天体物理
CiteScore
0.90
自引率
20.00%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Astrophysics (Ap) is a peer-reviewed scientific journal which publishes research in theoretical and observational astrophysics. Founded by V.A.Ambartsumian in 1965 Astrophysics is one of the international astronomy journals. The journal covers space astrophysics, stellar and galactic evolution, solar physics, stellar and planetary atmospheres, interstellar matter. Additional subjects include chemical composition and internal structure of stars, quasars and pulsars, developments in modern cosmology and radiative transfer.
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