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The Structurally Dynamic Cellular Network and Quantum Graphity Approaches to Quantum Gravity and Quantum Geometry - A Review and Comparison

机译:量子引力和量子几何的结构动态细胞网络和量子图解法-综述与比较。

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Starting from the working hypothesis that both physics and the corresponding mathematics and in particular geometry have to be described by means of discrete concepts on the Planck-scale, one of the many problems one has to face in this enterprise is to find the discrete proto-forms of the building blocks of our ordinary continuum physics and mathematics living on a smooth background, and perhaps more importantly find a way how this continuum limit emerges from the mentioned discrete structure. We model this underlying substratum as a structurally dynamic cellular network (basically a generalisation of a cellular automaton). We regard these continuum concepts and continuum space-time in particular as being emergent, coarse-grained and derived relative to this underlying erratic and disordered microscopic substratum, which we would like to call quantum geometry and which is expected to play by quite different rules, namely generalized cellular automaton rules. A central role in our analysis is played by a geometric renormalization group which creates (among other things) a kind of sparse translocal network of correlations between the points in classical continuous space-time and underlies, in our view, such mysterious phenomena as holography and the black hole entropy-area law. The same point of view holds for quantum theory which we also regard as a low-energy, coarse-grained continuum theory, being emergent from something more fundamental. In this paper we review our approach and compare it to the quantum graphity framework.
机译:从工作假设开始,即必须通过普朗克尺度上的离散概念来描述物理学和相应的数学,尤其是几何学,该企业必须面对的众多问题之一是找到离散原型。普通连续体物理学和数学的基本构造形式都生活在一个光滑的背景上,也许更重要的是找到一种从上述离散结构中出现这种连续体极限的方法。我们将此基础层建模为结构动态的蜂窝网络(基本上是蜂窝自动机的概括)。我们认为这些连续体概念和连续时空尤其是相对于该潜在的不稳定和无序的微观底层而言是新兴的,粗粒度的和派生的,我们将其称为量子几何,并且有望以完全不同的规则发挥作用,即广义元胞自动机规则。几何重归一化小组在我们的分析中发挥了核心作用,该小组(除其他外)在经典连续时空中的点之间建立了一种稀疏的跨地方关联网络,在我们看来,该基础隐含着全息和全息等神秘现象。黑洞熵面积定律。同样的观点也适用于量子理论,我们也将其视为一种低能量,粗粒度的连续谱理论,它是从更基本的东西中衍生出来的。在本文中,我们回顾了我们的方法,并将其与量子石墨性框架进行了比较。

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