论文标题

远程引力的一般有效现场理论

General Effective Field Theory of Teleparallel Gravity

论文作者

Mylova, Maria, Said, Jackson Levi, Saridakis, Emmanuel N.

论文摘要

我们构建了远程相对论(TEGR)的远程等效物的有效野外理论(EFT)。首先,我们介绍标量场和四方的必要场重新定义。然后,我们在近代阶段提供所有术语,其中包含扭转张量及其衍生物以及标量场的衍生物,并伴随着一般的标量依赖性依赖性耦合,其中所有操作员都被标尺$λ$抑制。使用字段重新定义删除所有冗余项,我们导致TEGR的EFT,其中包括与一般相对性的EFT相比,大量的术语。最后,我们在宇宙学框架中提出了一个应用程序。有趣的是,尽管GR和TEGR在经典方程级别完全相等,但我们发现它们相应的EFT具有较小但非零的差异。因此,我们确实验证了在较高能量的情况下,额外自由度的激发和特征在这两种理论中略有不同,从而使它们在理论上可以区分。然而,我们提到这些差异被重型质量规模$λ$抑制,因此不能保证可以在将来的实验和观察中测量它们。

We construct the Effective Field Theory (EFT) of the teleparallel equivalent of general relativity (TEGR). Firstly, we present the necessary field redefinitions of the scalar field and the tetrads. Then we provide all the terms at next-to-leading-order, containing the torsion tensor and its derivatives, and derivatives of the scalar field, accompanied by generic scalar-field-dependent couplings, where all operators are suppressed by a scale $Λ$. Removing all redundant terms using the field redefinitions we result to the EFT of TEGR, which includes significantly more terms comparing to the EFT of General Relativity. Finally, we present an application in a cosmological framework. Interestingly enough, although GR and TEGR are completely equivalent at the level of classical equations, we find that their corresponding EFTs possess minor but non-zero differences. Hence, we do verify that at higher energies the excitation and the features of the extra degrees of freedom are slightly different in the two theories, thus making them theoretically distinguishable. Nevertheless, we mention that these differences are suppressed by the heavy mass scale $Λ$ and thus it is not guaranteed that they could be measured in future experiments and observations.

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