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Model for a Universe described by a non-minimally coupled scalar field and interacting dark matter

机译:由非最小耦合标量场和相互作用的暗物质描述的宇宙模型

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In this work the evolution of a Universe model is investigated where a scalar field, non-minimally coupled to space-time curvature, plays the role of quintessence and drives the Universe to a present accelerated expansion. A non-relativistic dark matter constituent that interacts directly with dark energy is also considered, where the dark matter particle mass is assumed to be proportional to the value of the scalar field. Two models for dark matter pressure are considered: the usual one, pressureless, and another that comes from a thermodynamic theory and relates the pressure with the coupling between the scalar field and the curvature scalar. Although the model has a strong dependence on the initial conditions, it is shown that the mixture consisted of dark components plus baryonic matter and radiation can reproduce the expected red-shift behavior of the deceleration parameter, density parameters and luminosity distance.
机译:在这项工作中,研究了宇宙模型的演化,在该模型中,非最小耦合时空曲率的标量场起着典型作用,并驱动宇宙加速发展。还考虑了与暗能量直接相互作用的非相对论暗物质成分,其中暗物质粒子质量被假定与标量场的值成比例。考虑了暗物质压力的两种模型:通常的一种是无压力的,另一种来自热力学理论,其将压力与标量场和曲率标量之间的耦合联系起来。尽管该模型对初始条件有很强的依赖性,但结果表明,由暗组分和重子物质组成的混合物和辐射可以再现预期的减速参数,密度参数和光度距离的红移行为。

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