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Quadratic Gravity

机译:二次重力

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摘要

Adding terms quadratic in the curvature to the Einstein-Hilbert action renders gravity renormalizable. This property is preserved in the presence of the most general renormalizable couplings with (and of) a generic quantum field theory (QFT). The price to pay is a massive ghost, which is due to the higher derivatives that the terms quadratic in the curvature imply. In this paper the quadratic gravity scenario is reviewed including recent progress on the related stability problem of higher derivative theories. The renormalization of the theory is also reviewed and the final form of the full renormalization group equations in the presence of a generic renormalizable QFT is presented. The theory can be extrapolated up to infinite energy through the renormalization group if all matter couplings flow to a fixed point (either trivial or interacting). Moreover, besides reviewing the above-mentioned topics some further insight on the ghost issue and the infinite energy extrapolation is provided. There is the hope that in the future this scenario might provide a phenomenologically viable and UV complete relativistic field theory of all interactions.
机译:在Einstein-Hilbert作用中将曲率二次项添加到重力可归一化。在存在最普遍的可归一化耦合的情况下,使用(或完全)通用量子场论(QFT)可以保留此属性。要付出的代价是一个巨大的幽灵,这是由于曲率二次方所暗示的更高的导数所致。本文对二次重力情景进行了综述,包括有关高导数理论相关稳定性问题的最新进展。还对理论的重归一化进行了回顾,并给出了在存在通用可重归一化QFT的情况下完全重归一化组方程的最终形式。如果所有物质耦合都流到一个固定点(微不足道的或相互作用的),则可以通过重归一化组将理论推算为无限大的能量。此外,除了回顾上述主题外,还提供了有关幻影问题和无限能量外推的更多见解。希望将来这种情况可以为所有相互作用提供一种在现象学上可行且完全紫外线的相对论场论。

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