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Accurate Measurement in the Field of the Earth of the General-Relativistic Precession of the LAGEOS II Pericenter and New Constraints on Non-Newtonian Gravity

机译:LAGEOS II地心的广义相对论岁差和非牛顿引力的新约束在地球场中的精确测量

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The pericenter shift of a binary system represents a suitable observable to test for possible deviations from the Newtonian inverse-square law in favor of new weak interactions between macroscopic objects. We analyzed 13 years of tracking data of the LAGEOS satellites with GEODYN ii software but with no models for general relativity. From the fit of LAGEOS II pericenter residuals we have been able to obtain a 99.8% agreement with the predictions of Einstein's theory. This result may be considered as a 99.8% measurement in the field of the Earth of the combination of the γ and β parameters of general relativity, and it may be used to constrain possible deviations from the inverse-square law in favor of new weak interactions parametrized by a Yukawa-like potential with strength a and range λ. We obtained ∣a∣ ≤ 1×10~(-11), a huge improvement at a range of about 1 Earth radius.
机译:二元系统的中心点位移表示一个合适的可观测值,用于测试与牛顿反平方定律的可能偏差,从而有利于宏观物体之间新的弱相互作用。我们使用GEODYN ii软件分析了LAGEOS卫星13年的跟踪数据,但没有建立相对论模型。从LAGEOS II中心点残差的拟合中,我们已经可以与爱因斯坦理论的预测获得99.8%的一致性。该结果可以被认为是地球场中广义相对论的γ和β参数的组合的99.8%测量结果,并且可以用来限制与平方反比定律的可能偏差,从而有利于新的弱相互作用由具有强度a和范围λ的类似Yukawa势势参数化。我们获得∣a∣≤1×10〜(-11),在大约1个地球半径的范围内有巨大的进步。

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