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Renormalization group scale-setting from the action—a road to modified gravity theories

机译:从动作重新归一化组规模设定-一条通向修正重力理论的道路

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摘要

The renormalization group (RG) corrected gravitational action in Einstein– Hilbert and other truncations is considered. The running scale of the RG is treated as a scalar field at the level of the action and determined in a scale-setting procedure recently introduced by Koch and Ramirez for the Einstein–Hilbert truncation. The scale-setting procedure is elaborated for other truncations of the gravitational action and applied to several phenomenologically interesting cases. It is shown how the logarithmic dependence of the Newton’s coupling on the RG scale leads to exponentially suppressed effective cosmological constant and how the scale-setting in particular RG-corrected gravitational theories yields the effective f (R) modified gravity theories with negative powers of the Ricci scalar R. The scale-setting at the level of the action at the non-Gaussian fixed point in Einstein–Hilbert and more general truncations is shown to lead to universal effective action quadratic in the Ricci tensor.
机译:重新归一化组(RG)校正了爱因斯坦–希尔伯特和其他截断处的重力作用。 RG的运行标度被视为动作级别的标量场,并由Koch和Ramirez最近针对爱因斯坦-希尔伯特截断引入的标度设定程序确定。刻度设置程序针对引力作用的其他截断进行了详细说明,并应用于一些现象学上有趣的情况。结果表明,牛顿耦合对RG尺度的对数依赖性如何导致指数抑制有效的宇宙常数,以及尺度设定,特别是RG校正的引力理论如何产生具有f的负幂的有效f(R)修正引力理论。 Ricci标量R。在爱因斯坦–希尔伯特的非高斯不动点处的作用水平上的标度设定以及更一般的截断显示会导致Ricci张量中普遍有效的平方作用。

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