Galactic Compton Wavelengths in $f(R)$ Screening Theories

Bradley March, Clare Burrage, Aneesh P. Naik
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Abstract

$f(R)$ theories of modified gravity may be compatible with current observations if the deviations from general relativity are sufficiently well screened in dense environments. In recent work [arXiv:2310.19955] we have shown that approximations commonly used to assess whether galaxies are screened, or unscreened, fail to hold in observationally interesting parts of parameter space. One of the assumptions commonly made in these approximations, and more broadly in the study of $f(R)$ models, is that the mass of the scalar mode can be neglected inside a galaxy. In this work we demonstrate that this approximation may fail spectacularly and discuss the implications of this for tests of the theory.
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在 $f(R)$ 屏蔽理论中的银河康普顿波长
如果在致密环境中对广义相对论的偏差进行了充分的屏蔽,那么修正引力的 $f(R)$ 理论可能与当前的观测结果相一致。在最近的工作[arXiv:2310.19955]中,我们证明了通常用来评估星系是否被屏蔽或未被屏蔽的近似值,在参数空间中与观测相关的部分是不成立的。在这些近似中,以及在更广泛的$f(R)$模型研究中,通常的一个假设是星系内部标量模式的质量可以忽略不计。在这项工作中,我们证明了这一近似可能会严重失败,并讨论了这对理论检验的影响。
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