Time Evolution of Density Parameters for Matter and Dark Energy and their Interaction Term in Brans-Dicke Gravity

S. Roy, D. Nandi, Suman Ghosh, Apashanka Das
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Abstract

In the framework of Brans-Dicke (BD) theory, the first part of the present study determines the time dependence of BD parameter, energy density and equation of state (EoS) parameter of the cosmic fluid in a universe expanding with acceleration, preceded by a phase of deceleration. For this purpose, a scale factor has been chosen such that the deceleration parameter, obtained from it, shows a signature flip with time. Considering the dark energy to be responsible for the entire pressure, the time evolution of energy parameters for matter and dark energy and the EoS parameter for dark energy have been determined. An effective interaction term, between matter and dark energy, has been proposed and calculated. Its negative value at the present time indicates conversion of matter into dark energy. Using this term, the time dependence of the rates of change of matter and dark energy has been determined. It is found that the nature of dependence of the scalar field upon the scale factor plays a very important role in governing the time evolution of the cosmological quantities studied here. The present study provides us with a simple way to determine the time evolution of dark energy for a homogeneous and isotropic universe of zero spatial curvature, without involving any self-interaction potential or cosmological constant in the formulation.
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Brans-Dicke引力中物质和暗能量密度参数的时间演化及其相互作用项
在Brans-Dicke (BD)理论的框架下,本研究的第一部分确定了宇宙流体在加速膨胀、减速阶段之前的BD参数、能量密度和状态方程(EoS)参数的时间依赖性。为此,选择了一个尺度因子,使由此得到的减速参数随时间呈现特征翻转。考虑到暗能量对整个压力负责,确定了物质和暗能量的能量参数和暗能量的EoS参数的时间演化。提出并计算了物质与暗能量之间的有效相互作用项。目前它的负值表明物质转化为暗能量。利用这个术语,物质和暗能量变化率的时间依赖性已经确定。发现标量场对尺度因子的依赖性质在控制本文所研究的宇宙学量的时间演化中起着非常重要的作用。本研究为我们提供了一种简单的方法来确定零空间曲率的均匀和各向同性宇宙的暗能量的时间演化,而不涉及公式中的任何自相互作用势或宇宙常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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