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THE k-ESSENCE IN THE RELATIVISTIC THEORY OF GRAVITATION AND GENERAL RELATIVITY

机译:在相对论的引力理论中的k-本质和一般相对论

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We consider a model of a scalar field with a nontrivial kinetic part (k-essence) on the background of a flat homogeneous isotropic universe in the framework of the relativistic theory of gravitation and general relativity. Such a scalar field simulates the substance of an ideal fluid and serves as a model of dark energy because it leads to cosmological acceleration at later times. For finding a suitable cosmological scenario, it is more convenient to determine the dependence of the energy density of such a field on the scale factor and only then find the corresponding Lagrangian. Based on the solution of such an inverse problem, we show that in the relativistic theory of gravitation, either any scalar field of this type leads to instabilities, or the compression stage ends at an unacceptably early stage. We note that a consistent model of dark energy in the relativistic theory of gravitation can be a scalar field with a negative potential (ekpyrosis) of Steinhardt-Turok. In general relativity, the k-essence model is viable and can represent both dark energy and dark matter. We consider several specific k-essence models.
机译:在引力相对论和广义相对论的框架下,我们考虑了平坦均匀各向同性宇宙背景下具有非平凡运动部分(K-本质)的标量场模型。这样的标量场模拟了理想流体的物质,并作为暗能量的模型,因为它会在以后的时间里导致宇宙加速。为了找到一个合适的宇宙学场景,更方便的方法是确定这样一个场的能量密度对尺度因子的依赖关系,然后找到相应的拉格朗日。基于这样一个反问题的解,我们证明了在相对论引力理论中,要么这类标量场导致不稳定性,要么压缩阶段在不可接受的早期阶段结束。我们注意到,在相对论引力理论中,暗能量的一致性模型可以是一个带有Steinhardt Turok负势(ekpyrosis)的标量场。在广义相对论中,k-essence模型是可行的,可以同时代表暗能量和暗物质。我们考虑了几个具体的K-本质模型。

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