从拓扑考虑宇宙加速 III:列群

I. A. Sarmiento Alvarado, Maribel Hernández Márquez, Tonatiuh Matos
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引用次数: 0

摘要

最近对宇宙大尺度结构的观测表明,宇宙常数并不能成为暗能量性质的最终答案。因此,现在是提出替代方案来理解宇宙晚期加速膨胀的好时机。在这项工作中,我们研究了时空加速是由于宇宙拓扑造成的这一可能性。我们假设宇宙的拓扑结构是一个主纤维束,其基底空间是我们的四维时空,纤维是一个随时间演化的 N 维李群。我们认为基底空间是均质和各向同性的时空,我们发现,只要基底空间的结构常数满足某些条件,那么对于1<N$的紧凑半简单李群(其阶跃因子是相等的)和1<N$的非阿贝尔李群(其阶跃因子是不同的),基底空间目前是加速的。然而,当我们研究密度参数的演化时,它们与$\Lambda$CDM模型中的演化有所不同,这促使我们思考是否有可能使用不同的群作为纤维,以获得密度参数的正确演化。我们的结论是,宇宙的加速膨胀有可能是由于考虑了不同的宇宙拓扑结构作为主纤维束。
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Cosmic Acceleration from topological considerations III: Lie group
Recent observations on the large-scale structure of the universe indicate that the cosmological constant cannot be the definitive answer to the nature of dark energy. Therefore, it is a good time to propose alternatives to understand the late-accelerated expansion of the universe. In this work we study the possibility that the acceleration of space-time is due to the topology of the universe. We assume that the topology of the universe is a principal fiber bundle whose base space is our 4-dimensional spacetime and the fiber is an $N$-dimensional Lie group that evolves with time. For the base space we consider a homogeneous and isotropic spacetime, we find that the base space is currently accelerating for $1 < N$ compact semi-simple Lie groups whose scale-factors are equal and for $1 < N$ non-Abelian Lie groups whose scale-factors are different and as long as its structure constants satisfy some conditions. However when we study the evolution of the density parameters these differ from the evolution within the $\Lambda$CDM model, this led us to think in the possibility of use a different group as fiber in order to obtain the right evolution of the density parameters. We conclude that it is possible that the accelerated expansion of the universe is due to consider a different topology of the universe as a principal fiber bundle.
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