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Detecting modified gravity in the stars

机译:检测恒星中的修正引力

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Modified theories of gravity have received a renewed interest due to their ability to account for the cosmic acceleration. In order to satisfy the solar system tests of gravity, these theories need to include a screening mechanism that hides the modifications on small scales. One popular and well-studied theory is chameleon gravity. Our own galaxy is necessarily screened, but less dense dwarf galaxies may be unscreened and their constituent stars can exhibit novel features. In particular, unscreened stars are brighter, hotter and more ephemeral than screened stars in our own galaxy. They also pulsate with a shorter period. In this paper, we exploit these new features to constrain chameleon gravity to level three orders of magnitude lower the previous measurements. These constraints are currently the strongest in the literature.
机译:修正的引力论因其能够解释宇宙加速度而受到了重新的关注。为了满足太阳系对重力的测试,这些理论需要包括一种筛选机制,该筛选机制可以隐藏小规模的修改。变色龙引力是一种流行且经过深入研究的理论。我们自己的星系必须经过筛选,但是密度较小的矮星系可能没有经过筛选,其组成恒星可以表现出新颖的特征。尤其是,未筛选的恒星比我们银河系中的筛选过的恒星更亮,更热,更短暂。它们还以较短的周期脉动。在本文中,我们利用这些新功能将变色龙引力限制在比先前的测量值低三个数量级的水平。这些限制是目前文献中最强的。

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