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Probing gravity at sub-femtometer scales through the pressure distribution inside the proton

机译:通过质子内部的压力分布在次功能表上探测重力

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Recently, a measurement of the pressure distribution experienced by the quarks inside the proton has found a strong repulsive (positive) pressure at distances up to 0.6 femtometers from its center and a (negative) confining pressure at larger distances. In this paper we show that this measurement puts significant constraints on modified theories of gravity in which the strength of the gravitational interaction on microscopic scales is enhanced with respect to general relativity. We consider the particular case of Eddington-inspired Born-Infeld gravity, showing that strong limits onκ, the only additional parameter of the theory with respect to general relativity, may be derived from the quark pressure measurement (|κ|?10?1?m5kg?1s?2). Furthermore, we show how these limits may be significantly improved with precise measurements of the first and second moments of the pressure distribution inside the proton.
机译:近来,对质子内部的夸克经历的压力分布的测量发现,在距其中心最远0.6飞米的距离处有很强的排斥(正)压力,在较大距离处有(负)约束压力。在本文中,我们表明该测量对改良的重力理论施加了重大限制,其中相对于广义相对论,微观尺度上的重力相互作用的强度得到了增强。我们以爱丁顿为例的Born-Infeld引力的特殊情况为例,表明对κ的严格限制(理论上相对于广义相对论的唯一附加参数)可以从夸克压力测量中得出(|κ|?10?1? m5kg?1s?2)。此外,我们展示了如何通过精确测量质子内部压力分布的第一刻和第二刻可以显着改善这些限制。

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