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SOLAR SYSTEM TESTS OF f(R) GRAVITY

机译:f(R)重力的太阳能系统测试

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摘要

In this paper, we revisit the solar system tests of f(R) gravity. When the sun sits in a vacuum, the field ?' is light, which leads to a metric different from the observations. We reobtain this result in a simpler way by directly focusing on the equations of motion for f(R) gravity in the Jordan frame (JF). The discrepancy between the metric in the ?(R) gravity and the observations can be alleviated by the chameleon mechanism. The implications from the chameleon mechanism on the functional form f(R) are discussed. Considering the analogy of the solar system tests to the false vacuum decay problem, the effective potentials in different cases are also explored. The combination of analytic and numerical approaches enables us to ascertain whether an f(R) model can pass the solar system tests or not.
机译:在本文中,我们将重新审视f(R)重力的太阳系测试。当太阳处于真空中时,田野是吗?是光,导致度量不同于观测值。通过直接关注Jordan框架(JF)中f(R)重力的运动方程,我们以一种更简单的方式获得了该结果。变色龙机制可以缓解重力的度量与观测值之间的差异。讨论了变色龙机制对功能形式f(R)的影响。考虑到太阳系测试与虚假真空衰减问题的类比,还探讨了不同情况下的有效电势。分析和数值方法的结合使我们能够确定f(R)模型是否可以通过太阳系测试。

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