参数化后弗里德曼框架下非极小导数耦合的相互作用暗能量模型

A. Widiyani, A. Sutiono
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引用次数: 0

摘要

我们研究了标量场的非极小导数耦合的宇宙学模型的参数化问题,其中引力以标量场的形式与暗能量分量的导数非极小耦合。我们采用参数化后弗里德曼方法研究相互作用暗能量理论。我们展示了如何通过将某些假设限制为几个非零系数来减少大量的自由函数。我们只考虑暗扇区最多包含度规场和标量场的二阶时间导数的情况。在本文中,我们通过一个黑暗部门相互作用模型的例子来展示它们的使用,并根据当前的文献对它们进行分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An An Interacting Dark Energy Model with Nonminimal Derivative Coupling in the Parameterized Post-Friedmannian Framework
We investigation the parameterization of the cosmological model with the nonminimal derivative coupling of a scalar field where gravity is coupled nonminimally with the derivatives of dark energy components in the form of a scalar field. We follow the parameterized post-Friedmannian approach for the interacting dark energy theories. We show how the big number of free functions can be reduced by limiting certain assumptions to a few non-zero coefficients. We only consider the case that the dark sector contains at most second order in time derivatives of the metric and scalar fields. In this paper, we demonstrate their use through an example of the dark sector interactions model and classify them according to the current literature.
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