在不确定性介导的暴胀模型中宇宙的平坦性问题

IF 1.2 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS Gravitation and Cosmology Pub Date : 2021-09-14 DOI:10.1134/S0202289321030063
Yu. V. Dumin
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引用次数: 0

摘要

对近似平坦的三维空间的自洽解释是任何宇宙学模型的主要概念问题之一,决定了它在各种理论建议中的可行性和竞争力。特别是,无法解决平坦性问题是拒绝旧的“前暴胀”宇宙模型并以暴胀情景来改变它的原因之一。在这里,我们简要回顾了如何在早期宇宙的各种模型中解释三维平面性,并详细讨论了我们在之前的论文[7]中提出的不确定性介导的暴胀情况。根据我们的分析,最后一个模型中的近似平面三维空间确实可以“动态”形成,从一般初始条件开始。考虑到该模型也很好地解决了早期宇宙中的因果关系问题[8],不确定性介导的暴胀可能是其他暴胀情景的合理替代方案。
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The Problem of Flatness of the Universe in the Uncertainty-mediated Inflationary Model

A self-consistent explanation of the approximately flat three-dimensional space is one of the major conceptual issues of any cosmological model, determining its viability and competitiveness among the various theoretical proposals. In particular, just the inability to resolve the problem of flatness was one of the reasons to reject the old “pre-inflationary” cosmological model and to change it by the inflationary scenario. Here, we briefly recall how the three-dimensional flatness can or cannot be explained in the various models of the early Universe and discuss in detail the case of uncertainty-mediated inflation, which was suggested in our previous paper [7]. As follows from our analysis, the approximately flat 3D space in the last-mentioned model can really be formed “dynamically,” starting from generic initial conditions. Taking into account that this model also well resolves the causality problems in the early Universe [8], the uncertainty-mediated inflation might be a reasonable alternative to other inflationary scenarios.

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来源期刊
Gravitation and Cosmology
Gravitation and Cosmology ASTRONOMY & ASTROPHYSICS-
CiteScore
1.70
自引率
22.20%
发文量
31
审稿时长
>12 weeks
期刊介绍: Gravitation and Cosmology is a peer-reviewed periodical, dealing with the full range of topics of gravitational physics and relativistic cosmology and published under the auspices of the Russian Gravitation Society and Peoples’ Friendship University of Russia. The journal publishes research papers, review articles and brief communications on the following fields: theoretical (classical and quantum) gravitation; relativistic astrophysics and cosmology, exact solutions and modern mathematical methods in gravitation and cosmology, including Lie groups, geometry and topology; unification theories including gravitation; fundamental physical constants and their possible variations; fundamental gravity experiments on Earth and in space; related topics. It also publishes selected old papers which have not lost their topicality but were previously published only in Russian and were not available to the worldwide research community
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