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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Inhomogeneous universe from group field theory condensate
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Inhomogeneous universe from group field theory condensate

机译:来自集团场理论凝结物的不均匀宇宙

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One of the fundamental challenges for quantum cosmology is to explain the emergence of our macroscopic Universe from physics at the Planck scale. In the group field theory (GFT) approach to quantum gravity, such a macroscopic universe results from the formation of a "condensate" of fundamentally discrete degrees of freedom. It has been shown that the effective dynamics of such GFT condensates follows the classical Friedmann dynamics at late times, while avoiding the classical singularity by a bounce akin to the one of loop quantum cosmology (LQC). It was also shown how quantum fluctuations in a GFT condensate provide an initial power spectrum of volume fluctuations around exact homogeneity. Here we connect the results for quantum fluctuations in GFT to the usual formalism for cosmological perturbations within quantum field theory in curved spacetime. We consider a bouncing universe filled with a massless scalar field, in which perturbations are generated by vacuum fluctuations in the contracting phase. Matching conditions at the bounce are provided by working within LQC. We then compare the results to the GFT condensate scenario for quantum gravity with massless scalar matter. Here, instead, an initial quantum phase described by a GFT condensate generates initial scalar perturbations through quantum fluctuations. We show general agreement in the predictions of both approaches, suggesting that GFT condensates can provide a physical mechanism for the emergence of a slightly inhomogeneous universe from full quantum gravity.
机译:量子宇宙学的基本挑战之一是向普朗克斯规模解释我们宏观宇宙从物理学的出现。在基础场理论(GFT)方法中对量子重力的方法,这种宏观宇宙从形成了基本上离散的自由度的“凝结物”的形成。已经表明,这种GFT冷凝物的有效动态在较晚的时间遵循经典的Friedmann动态,同时通过向环路量子宇宙学(LQC)的反弹来避免典型的奇点。还示出了GFT冷凝物中的量子波动如何提供围绕精确均匀性的体积波动的初始功率谱。在这里,我们将GFT中量子波动的结果连接到弯曲时空中量子场理论中的宇宙学扰动的通常形式主义。我们考虑一个填充有无抽质标量场的弹跳宇宙,其中通过收缩阶段的真空波动产生扰动。通过在LQC内工作提供反弹的匹配条件。然后,我们将结果与无麻自动标量物质的量子重力进行比较GFT冷凝器场景。相反,通过量子波动,由GFT冷凝物描述的初始量子相产生初始标量扰动。我们在两种方法的预测中展示了一般同意,表明GFT冷凝物可以提供来自全量子重力的略微不均匀宇宙的物理机制。

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