论文标题

小组场理论宇宙学中的热量子重力冷凝物

Thermal quantum gravity condensates in group field theory cosmology

论文作者

Assanioussi, Mehdi, Kotecha, Isha

论文摘要

小组场理论的冷凝水宇宙学计划产生了几个有趣的结果。关键思想是,建议宏观均匀的时空可以通过任意大量候选几何形状候选量子的基础显微镜系统的动力学凝结相近似。在这项工作中,我们以两种方式扩展了标准处理:通过使用一类热冷凝物,相干的热状态,它们编码量子几何形状中的统计波动;并且,通过引入一类合适的涂抹功能,作为小组字段理论中关系时钟框架的非单明性,表现良好的概括。特别是,我们研究了一种有效的关系宇宙学动力学,用于从一类自由组田间理论模型中提取的均质和各向同性空间,随后研究了其后期和早期演变的各个方面。我们发现弗里德曼方程的正确经典限制在后期,早期反弹并加速了扩张。具体而言,我们在与一般的热热冷凝物的统计贡献相对应的进化方程中找到了其他校正项;并且,即使不包括任何相互作用,也对电子折数的上限进行了较高的上限。

The condensate cosmology programme of group field theory has produced several interesting results. The key idea is in the suggestion that a macroscopic homogeneous spacetime can be approximated by a dynamical condensate phase of the underlying microscopic system of an arbitrarily large number of candidate quanta of geometry. In this work, we extend the standard treatments in two ways: by using a class of thermal condensates, the coherent thermal states, which encode statistical fluctuations in quantum geometry; and, by introducing a suitable class of smearing functions as non-singular, well-behaved generalisations for relational clock frames in group field theory. In particular, we investigate an effective relational cosmological dynamics for homogeneous and isotropic spacetimes, extracted from a class of free group field theory models, and subsequently investigate aspects of its late and early times evolution. We find the correct classical limit of Friedmann equations at late times, with a bounce and accelerated expansion at early times. Specifically, we find additional correction terms in the evolution equations corresponding to the statistical contribution of the new thermal condensates in general; and, a higher upper bound on the number of e-folds, even without including any interactions.

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