广义相对论中一些不寻常的虫洞

K. Bronnikov
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引用次数: 2

摘要

在这篇简短的综述中,我们提出了最近在广义相对论(GR)框架下在四维和六维中获得的一些可穿越虫洞模型,这些模型在某种程度上拓宽了我们对虫洞存在和性质的普遍看法。首先,它们是旋转的圆柱形虫洞,在径向上渐近平坦,不存在外来物质。由于在所有空间方向上缺乏渐近平坦性,拓扑检查定理不被违反。第二,这些是基于lema -托尔曼-邦迪解决方案构建的宇宙虫洞。它们连接了一个充满灰尘的封闭的弗里德曼世界的两个副本,或者是同一个弗里德曼世界的两个遥远的部分。第三,这些虫洞是在六维广义相对论中获得的,它们的一个入口位于“我们的”具有非常小的额外维度的渐近平坦世界中,而另一个“端点”属于具有大额外维度的宇宙,因此具有不同的物理性质。简要讨论了这种虫洞可能的可观测特征。本文是主题问题“数学宇宙学的未来,第一卷”的一部分。
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Some unusual wormholes in general relativity
In this short review, we present some recently obtained traversable wormhole models in the framework of general relativity (GR) in four and six dimensions that somehow widen our common ideas on wormhole existence and properties. These are, first, rotating cylindrical wormholes, asymptotically flat in the radial direction and existing without exotic matter. The topological censorship theorems are not violated due to lack of asymptotic flatness in all spatial directions. Second, these are cosmological wormholes constructed on the basis of the Lemaître–Tolman–Bondi solution. They connect two copies of a closed Friedmann world filled with dust, or two otherwise distant parts of the same Friedmann world. Third, these are wormholes obtained in six-dimensional GR, whose one entrance is located in ‘our’ asymptotically flat world with very small extra dimensions while the other ‘end’ belongs to a universe with large extra dimensions and therefore different physical properties. The possible observable features of such wormholes are briefly discussed. This article is part of the theme issue ‘The future of mathematical cosmology, Volume 1’.
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