论文标题

降低的Horndeski理论中的重力波随机背景

Gravitational wave stochastic background in reduced Horndeski theories

论文作者

Lobato, João C., Matos, Isabela S., Calvão, Maurício O., Waga, Ioav

论文摘要

我们推广以减少Horndeski的重力理论,其中重力波(GWS)以光速传播,统计均匀且非极化的随机重力引力波背景(SGWB)信号的表达是由两个干涉仪在任意配置中检测到的单个信号之间的相关性测得的相关性。我们还讨论了文献中有关修改理论中宇宙学距离的一些结果,即,基于能量通量的引力波亮度距离的GW信号二元距离关系的同时有效性以及从波幅度推断的距离。这项讨论使我们得出结论,天体物理SGWB信号的每单位固体角度的光谱能密度具有相同的功能依赖性,并且每个发射源的光度与一般相对论(GR)的光度相同。使用GW Energy-Momentum张量的广义表达和张量模式的修饰传播定律,我们得出的结论是,SGWB的能量密度与GR中的比例因子保持了相同的功能关系,前提是修改理论在给定的恒定时间的给定超级表液中与GR相一致。但是,检测到的信号与光谱能密度之间的关系通过全局因子$ g_4(φ(t_0))$更改,因此有可能用作修饰的重力理论的探针。

We generalize to reduced Horndeski theories of gravity, where gravitational waves (GWs) travel at the speed of light, the expression of a statistically homogeneous and unpolarized stochastic gravitational wave background (SGWB) signal measured as the correlation between the individual signals detected by two interferometers in arbitrary configurations. We also discuss some results found in the literature regarding cosmological distances in modified theories, namely, the simultaneous validity of a duality distance relation for GW signals and of the coincidence between the gravitational wave luminosity distance, based on the energy flux, and the distance inferred from the wave amplitude. This discussion allows us to conclude that the spectral energy density per unit solid angle of an astrophysical SGWB signal has the same functional dependency with the luminosity of each emitting source as in General Relativity (GR). Using the generalized expression of the GW energy-momentum tensor and the modified propagation law for the tensor modes, we conclude that the energy density of a SGWB maintains the same functional relation with the scale factor as in GR, provided that the modified theory coincides with GR in a given hypersurface of constant time. However, the relation between the detected signal and the spectral energy density is changed by the global factor $G_4(φ(t_0))$, thus potentially serving as a probe for modified gravity theories.

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