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Cosmology with torsion: An alternative to cosmic inflation

机译:扭转宇宙学:宇宙膨胀的替代方法

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摘要

We propose a simple scenario which explains why our Universe appears spatially flat, homogeneous and isotropic. We use the Einstein–Cartan–Kibble–Sciama (ECKS) theory of gravity which naturally extends general relativity to include the spin of matter. The torsion of spacetime generates gravitational repulsion in the early Universe filled with quarks and leptons, preventing the cosmological singularity: the Universe expands from a state of minimum but finite radius. We show that the dynamics of the closed Universe immediately after this state naturally solves the flatness and horizon problems in cosmology because of an extremely small and negative torsion density parameter, Ω S ≈ ? 10 ? 69 . Thus the ECKS gravity provides a compelling alternative to speculative mechanisms of standard cosmic inflation. This scenario also suggests that the contraction of our Universe preceding the bounce at the minimum radius may correspond to the dynamics of matter inside a collapsing black hole existing in another universe, which could explain the origin of the Big Bang.
机译:我们提出了一个简单的场景,解释了为什么我们的宇宙在空间上显得平坦,均匀且各向同性。我们使用爱因斯坦-卡丹-基布尔-夏玛(ECKS)引力理论,自然地将广义相对论扩展到包括物质自旋。时空扭曲在充满夸克和轻子的早期宇宙中产生引力斥力,阻止了宇宙学的奇点:宇宙从最小但有限的半径状态扩展。我们证明,由于极小且负的扭转密度参数ΩS≈?,该状态之后紧紧闭合的宇宙的动力学自然地解决了宇宙学中的平面度和视界问题。 10? 69。因此,ECKS引力为标准宇宙膨胀的推测机制提供了令人信服的替代方案。这种情况还表明,在最小半径的反弹之前,我们宇宙的收缩可能对应于另一个宇宙中存在的坍塌黑洞内物质的动力学,这可以解释大爆炸的起源。

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