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f(R) actions, cosmic acceleration and local tests of gravity

机译:f(R)动作,宇宙加速度和重力局部测试

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摘要

We study spherically symmetric solutions in f(R) theories and its compatibility with local tests of gravity. We start by clarifying the range of validity of the weak field expansion and show that for many models proposed to address the Dark Energy problem this expansion breaks down in realistic situations. This invalidates the conclusions of several papers that make inappropriate use of this expansion. For the stable models that modify gravity only at small curvatures we find that when the asymptotic background curvature is large we approximately recover the solutions of Einstein gravity through the so-called Chameleon mechanism, as a result of the non-linear dynamics of the extra scalar degree of freedom contained in the metric. In these models one would observe a transition from Einstein to scalar-tensor gravity as the Universe expands and the background curvature diminishes. Assuming an adiabatic evolution we estimate the redshift at which this transition would take place for a source with given mass and radius. We also show that models of dynamical Dark Energy claimed to be compatible with tests of gravity because the mass of the scalar is large in vacuum (e.g. those that also include R^2 corrections in the action), are not viable.
机译:我们研究f(R)理论中的球对称解及其与局部引力测试的兼容性。我们首先阐明弱场扩展的有效性范围,并表明对于许多为解决暗能量问题而提出的模型,该扩展在现实情况下会崩溃。这使无效使用此扩展的几篇论文的结论无效。对于仅在小曲率处修改引力的稳定模型,我们发现,当渐近背景曲率较大时,由于额外标量的非线性动力学,我们通过所谓的变色龙机制大致恢复了爱因斯坦引力的解。指标中包含的自由度。在这些模型中,随着宇宙的扩大和背景曲率的减小,人们将观察到从爱因斯坦到标量张量重力的过渡。假定绝热演化,我们估计了对于具有给定质量和半径的源,该转变将发生的红移。我们还证明了动态暗能量模型声称与重力测试兼容,因为标量的质量在真空中很大(例如那些在动作中还包含R ^ 2校正的模型)是不可行的。

著录项

  • 作者

    Navarro, I; Van Acoleyen, K;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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