论文标题

探索渐近安全的单型量子重力的新角落

Exploring new corners of asymptotically safe unimodular quantum gravity

论文作者

de Brito, Gustavo P., Pereira, Antonio D., Vieira, Arthur F.

论文摘要

在流动有效作用的两种不同类别的截断中研究了单型量子重力的重新归一化组流动。特别是,我们搜索$ f(r)$ - 类型的多项式扩展以及$ f(r_ {μν} r^{μν})+r \,z(r_ {μν} r^{μν} r^{μν})$ family在最大值的背景上。我们关闭了重力耦合的β功能系统,该系统具有根据两种独立处方处理的重力和Faddeev-Popov幽灵的异常尺寸:一个基于所谓背景近似的基于所谓的背景近似值,另一个基于混合方法,将背景近似与同一近似值结合了近似vertex and vertex and dertex and dertex and derivative anderivation。为了保持一致性,在背景近似中,我们采用背景依赖性校正对流程方程的校正,该校正是由对单型路径积分的功能度量的适当处理产生的。我们还研究了调节器函数中内态参数的不同规范选择如何影响固定点结构。尽管我们发现了两类多项式投影存在非平凡的固定点的证据,但$ f(r)$截断表现出更好(明显的)收敛性。此外,我们考虑将物质领域的包含在没有自我互动的情况下最少耦合到非模块性重力作用,并且我们发现证据表明渐近安全的单型量子重力与标准模型及其某些公共扩展的磁场含量兼容。

The renormalization group flow of unimodular quantum gravity is investigated within two different classes of truncations of the flowing effective action. In particular, we search for non-trivial fixed-point solutions for polynomial expansions of the $f(R)$-type as well as of the $F(R_{μν}R^{μν})+R\,Z(R_{μν}R^{μν})$ family on a maximally symmetric background. We close the system of beta functions of the gravitational couplings with anomalous dimensions of the graviton and Faddeev-Popov ghosts treated according to two independent prescriptions: one based on the so-called background approximation and the other based on a hybrid approach which combines the background approximation with simultaneous vertex and derivative expansions. For consistency, in the background approximation, we employ a background-dependent correction to the flow equation which arises from the proper treatment of the functional measure of the unimodular path integral. We also investigate how different canonical choices of the endomorphism parameter in the regulator function affect the fixed-point structure. Although we have found evidence for the existence of a non-trivial fixed point for the two classes of polynomial projections, the $f(R)$ truncation exhibited better (apparent) convergence properties. Furthermore, we consider the inclusion of matter fields without self-interactions minimally coupled to the unimodular gravitational action and we find evidence for compatibility of asymptotically safe unimodular quantum gravity with the field content of the Standard Model and some of its common extensions.

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