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THE SELF-ORGANIZED DE SITTER UNIVERSE

机译:自我组织的大学

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摘要

We propose a theory of quantum gravity which formulates the quantum theory as a nonperturbative path integral, where each space–time history appears with the weight exp (iSEH), with SEH the Einstein–Hilbert action of the corresponding causal geometry. The path integral is diffeomorphism-invariant (only geometries appear) and backgroundindependent. The theory can be investigated by computer simulations, which show that a de Sitter universe emerges on large scales. This emergence is of an entropic, selforganizing nature, with the weight of the Einstein–Hilbert action playing a minor role. Also, the quantum fluctuations around this de Sitter universe can be studied quantitatively and remain small until one gets close to the Planck scale. The structures found to describe Planck-scale gravity are reminiscent of certain aspects of condensed-matter systems.
机译:我们提出了一种量子引力理论,该理论将量子理论表述为非扰动路径积分,其中每个时空历史均以权重exp(iSEH)出现,而SEH则是因果几何的爱因斯坦-希尔伯特作用。路径积分是微分不变的(仅出现几何形状)且与背景无关。可以通过计算机模拟来研究该理论,这表明de Sitter宇宙正在大规模出现。这种出现具有熵,自组织的性质,爱因斯坦-希尔伯特动作的分量起着较小的作用。同样,可以定量研究这个de Sitter宇宙周围的量子涨落,并保持很小,直到接近普朗克尺度为止。被发现描述普朗克尺度重力的结构让人联想到凝聚态系统的某些方面。

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