论文标题

参数化的牛顿后形式主义,用于通过筛选的重建的Horndeski理论的有效田间理论

Parameterised post-Newtonian formalism for the effective field theory of dark energy via screened reconstructed Horndeski theories

论文作者

Renevey, Cyril, Kennedy, Joe, Lombriser, Lucas

论文摘要

我们汇集了两种流行的形式主义,这些形式概论地将偏离天体物理和宇宙学量表的一般相对论偏离,即纽顿后(PPN)形式主义的参数化,以及深色能量的有效田间理论(EFT)。这些单独的形式主义成功地应用于在其各自的适用性方面对重力的独立测试。非线性筛选机制确实使得必须探测跨广泛尺度的一般相对论。为了对互补测量的全面解释,将它们连接起来以有效限制巨大的重力模型空间很重要。我们在Horndeski标量调整理论的框架内建立了这种联系,仅限于引力波的腔内传播速度。通过从EFT函数集中的线性退化协变量作用以及随后从重建的理论中衍生的PPN参数的派生。我们概述了确保重建的Horndeski模型具有筛选机制的所需条件,该机制可以对宇宙学尺度进行重大修改,同时尊重严格的天体物理界限。然后,我们采用缩放方法,在其筛选的策略中执行重建模型的一般后牛顿扩展,以得出其PPN参数$γ$和$β$。

We bring together two popular formalisms which generically parameterise deviations from General Relativity on astrophysical and cosmological scales, namely the parameterised post-Newtonian (PPN) formalism and the effective field theory (EFT) of dark energy and modified gravity. These separate formalisms are successfully applied to independently perform tests of gravity in their respective regimes of applicability on vastly different length scales. Nonlinear screening mechanisms indeed make it imperative to probe General Relativity across a wide range of scales. For a comprehensive interpretation of the complementary measurements it is important to connect them to effectively constrain the vast gravitational model space. We establish such a connection within the framework of Horndeski scalar-tensor theories restricted to a luminal propagation speed of gravitational waves. This is possible via the reconstruction of the family of linearly degenerate covariant Horndeski actions from the set of EFT functions and the subsequent derivation of the PPN parameters from the reconstructed theory. We outline the required conditions which ensure a reconstructed Horndeski model possesses a screening mechanism that enables significant modifications on cosmological scales while respecting stringent astrophysical bounds. Employing a scaling method, we then perform the general post-Newtonian expansion of the reconstructed models to derive their PPN parameters $γ$ and $β$ in their screened regimes.

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