f(Q)重力下指数型模型的宇宙学演化参数、能量条件和线性物质扰动分析

IF 2.1 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Ivan R. Vasquez, A. Oliveros
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引用次数: 0

摘要

我们在修正STEGR引力或f(Q)的背景下,使用指数双参数模型解析研究了平坦FLRW时空中的宇宙演化,该模型代表了\(\Lambda \) CDM模型周围的光滑微扰膨胀。宇宙学分析是通过计算哈勃参数作为红移的函数来进行的,对于选定的参数值。哈勃参数是通过几个近似的方法解析得到的,这些近似足够好,可以稍微偏离数值解。计算了几个晚时宇宙学参数,如暗能量状态参数、减速参数和状态探测器参数。此外,我们还分析了经典能量条件WEC、SEC、NEC和DEC在物质和几何贡献结合以及单独几何贡献下的行为。在背景水平之外,通过计算与结构生长和形成相关的参数来研究线性物质摄动。总体结果表明,该模型可能表现出类似于典型和幽灵的行为,并且它还通过对聚类的后期贡献影响了宇宙中结构的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the cosmological evolution parameters, energy conditions, and linear matter perturbations of an exponential-type model in f(Q) gravity

We analytically study cosmological evolution in a flat FLRW spacetime in the context of modified STEGR gravity or f(Q), using an exponential two-parameter model which represents a smooth perturbative expansion around the \(\Lambda \)CDM model. The cosmological analysis is carried out by calculating the Hubble parameter as a function of redshift, for selected values of the parameters. The Hubble parameter is obtained analytically by means of several approximations good enough to deviate slightly from the numerical solution. Several late-time cosmological parameters are computed, such as dark energy state parameter, deceleration parameter, and statefinder parameters. Additionally, we analyzed the behavior of the classical energy conditions WEC, SEC, NEC, and DEC for both the combination of matter and geometrical contribution and the geometrical contribution alone. Beyond the background level, linear matter perturbations are studied by calculating parameters relevant to structure growth and formation. The overall results indicate that the model may exhibit quintessence-like and phantom-like behavior and it also impacts the growth of structures in the universe by means late-time contributions to clustering.

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来源期刊
General Relativity and Gravitation
General Relativity and Gravitation 物理-天文与天体物理
CiteScore
4.60
自引率
3.60%
发文量
136
审稿时长
3 months
期刊介绍: General Relativity and Gravitation is a journal devoted to all aspects of modern gravitational science, and published under the auspices of the International Society on General Relativity and Gravitation. It welcomes in particular original articles on the following topics of current research: Analytical general relativity, including its interface with geometrical analysis Numerical relativity Theoretical and observational cosmology Relativistic astrophysics Gravitational waves: data analysis, astrophysical sources and detector science Extensions of general relativity Supergravity Gravitational aspects of string theory and its extensions Quantum gravity: canonical approaches, in particular loop quantum gravity, and path integral approaches, in particular spin foams, Regge calculus and dynamical triangulations Quantum field theory in curved spacetime Non-commutative geometry and gravitation Experimental gravity, in particular tests of general relativity The journal publishes articles on all theoretical and experimental aspects of modern general relativity and gravitation, as well as book reviews and historical articles of special interest.
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