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Parametrizing modified gravity for cosmological surveys

机译:宇宙学调查的参数化改性重力

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摘要

One of the challenges in testing gravity with cosmology is the vast freedom opened when extending General Relativity. For linear perturbations, one solution consists in using the effective field theory of dark energy. Even then, the theory space is described in terms of a handful of free functions of time. This needs to be reduced to a finite number of parameters to be practical for cosmological surveys. We explore in this article how well simple parametrizations, with a small number of parameters, can fit observables computed from complex theories. Imposing the stability of linear perturbations appreciably reduces the theory space we explore. We find that observables are not extremely sensitive to short time-scale variations and that simple, smooth parametrizations are usually sufficient to describe this theory space. Using the Bayesian information criterion, we find that using two parameters for each function (an amplitude and a power-law index) is preferred over complex models for 86% of our theory space.
机译:测试引力与宇宙学的挑战之一是在延伸一般相对性时开放的巨大自由。对于线性扰动,一个解决方案包括使用有效的暗能场理论。即便如此,理论空间就在少数时间的时间内描述。这需要将其降至有限数量的参数,以用于宇宙学调查。我们在本文中探索了简单的参数化,具有少量参数,可以适合从复杂理论计算的可观察到。强加线性扰动的稳定性明显降低了我们探索的理论空间。我们发现可观察到对短时间变化并不非常敏感,并且简单,平滑的参数化通常足以描述该理论空间。使用贝叶斯信息标准,我们发现,在我们的理论空间的86%的复杂模型中,使用两个参数(幅度和电力法指数)是优先于我们的理论空间的86%。

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  • 来源
    《Physical Review D》 |2017年第8期|063516.1-063516.11|共11页
  • 作者

    Jerome Gleyzes;

  • 作者单位

    Jet Propulsion Laboratory California Institute of Technology Pasadena 91109 California and California Institute of Technology Pasadena 91125 California;

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  • 正文语种 eng
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