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Local Gravity Constraints and Power Law f (R) Theories

机译:局部重力约束与幂律f(R)理论

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摘要

There is a conformal equivalence between power law f(R) theories and scalar field theories in which the scalar degree of freedom evolves under the action of an exponential potential function. In the scalar field representation, there is a strong coupling of the scalar field with the matter sector due to the conformal transformation. We use the chameleon mechanism to implement constraints on the potential function of the scalar field in order that the resulting model be in accord with Solar System experiments. Investigation of these constraints reveals that there may be no possibility to distinguish between a power law f(R) function and the usual Einstein-Hilbert Lagrangian density.
机译:幂律f(R)理论和标量场理论之间存在共形等价物,其中标量自由度在指数势函数的作用下演化。在标量场表示中,由于共形变换,标量场与物质扇区之间存在强耦合。我们使用变色龙机制对标量场的势函数实施约束,以使生成的模型与太阳系实验一致。对这些限制条件的研究表明,不可能将幂律函数f(R)与通常的爱因斯坦-希尔伯特·拉格朗日密度区分开。

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