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ULTRAVIOLET DIVERGENCES AND SCALE-DEPENDENT GRAVITATIONAL COUPLINGS

机译:紫外线分流和尺度依赖的重力联轴器

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I review the field-theoretic renomalization group approach to quantum gravity, built around the existence of a non-trivial ultraviolet fixed point in four dimensions. I discuss the implications of such a fixed point, found in three largely unrelated non-perturbative approaches, and how it relates to the vacuum state of quantum gravity, and specifically to the running of G. One distinctive feature of the new fixed point is the emergence of a second genuinely non-perturbative scale, analogous to the scaling violation parameter in non-abelian gauge theories. I argue that it is natural to identify such a scale with the small observed cosmological constant, which in quantum gravity can arise as a non-perturbative vacuum condensate. I then show how the lattice cutoff theory of gravity can in principle provide quantitative predictions on the running of G, which can then be used to construct manifestly covariant effective field equations, and from there estimate the size of non-local quantum corrections to the standard GR framework.
机译:我审查了对量子重力的现场理论重新定义组方法,围绕四维的非普通紫外线固定点的存在。我讨论了这种固定点的含义,在三种很大程度上存在于三种不相关的非扰动方法,以及它如何与量子重力的真空状态有关,并且具体地涉及到G的运行。新的固定点的一个独特特征是第二个真正非扰动量表的出现,类似于非雅中规格理论中的缩放违规参数。我认为,用小观察到的宇宙学常数识别这种规模是自然的,这在量子重力中可以作为非扰动真空冷凝物而产生。然后,我展示了原则上的格子截止重力理论如何提供对G的运行的定量预测,然后可以用于构建明显的协助有效的场方程,并且从那里估计了标准的非本地量子校正的大小GR框架。

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