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Nonstandard gravitational waves imply gravitational slip: On the difficulty of partially hiding new gravitational degrees of freedom

机译:非标准引力波意味着重力滑动:关于部分隐藏新的重力自由度的难度

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摘要

In many generalized models of gravity, perfect fluids in cosmology give rise to gravitational slip. Simultaneously, in very broad classes of such models, the propagation of gravitational waves is altered. We investigate the extent to which there is a one-to-one relationship between these two properties in three classes of models with one extra degree of freedom: scalar (Horndeski and beyond), vector (Einsteinaether), and tensor (bimetric). We prove that in bimetric gravity and Einstein-aether, it is impossible to dynamically hide the gravitational slip on all scales whenever the propagation of gravitational waves is modified. Horndeski models are much more flexible, but it is nonetheless only possible to hide gravitational slip dynamically when the action for perturbations is tuned to evolve in time toward a divergent kinetic term. These results provide an explicit, theoretical argument for the interpretation of future observations if they disfavored the presence of gravitational slip.
机译:在许多广义的重力模型中,宇宙学中的完美液体引起重力滑动。同时,在非常广泛的这种模型中,重力波的传播被改变。我们调查了三类模型中这两个属性之间存在一对一关系的程度,具有一个额外的自由度:标量(Horndeski及超越),矢量(Einsteina4ther)和张量(双金属)。我们证明,只要修改重力波的传播,就不可能在所有尺度上动态地隐藏着重力滑动。 Horndeski模型更灵活,但只有在调整扰动的动作时,仍然可以动态地隐藏引力滑动,以便及时进化到发散的动力学术语。这些结果为解释未来观察的解释提供了明确的理论论点,如果他们不受重力滑动的存在。

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  • 来源
    《Physical Review D》 |2017年第8期|083520.1-083520.16|共16页
  • 作者单位

    Department de Physique Theorique and Center for Astroparticle Physics Universite de Geneve Quai E. Ansermet 24 1211 Geneve Switzerlan Central European Institute for Cosmology and Fundamental Physics Fyzikalni ustav Akademie ved CR Na Slovance 2 182 21 Praha 8 Czechia;

    Instituto de Astrofisica e Ciencias do Espaco Faculdade de Ciencias Campo Grande PT1749-016 Lisboa Portugal;

    Department de Physique Theorique and Center for Astroparticle Physics Universite de Geneve Quai E. Ansermet 24 1211 Geneve Switzerlan;

    Intitut fuer Theoretische Physik Ruprecht-Karls-Universitaet Heidelberg Philosophenweg 16 69120 Heidelberg Germany;

    Department de Physique Theorique and Center for Astroparticle Physics Universite de Geneve Quai E. Ansermet 24 1211 Geneve Switzerlan;

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