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Tidal effects in space experiments to test the equivalence principle: implications on the experiment design

机译:太空试验中潮汐效应的等效原理测试:对实验设计的启示

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Experiments to test the equivalence principle (EP) in low Earth orbit require to detect the effects of an extremely small non-classical differential acceleration between test masses of different composition. In all proposed experiments the test masses are concentric coaxial cylinders, so as to reduce classical tidal effects which are differential too. Perfect centring being impossible, tidal effects need to be carefully investigated as they impose severe constraints on the basic features of the experiment design. The present analysis shows that with free flying (uncoupled) test masses an EP violation signal could be detected if the initial conditions of the masses were finely adjusted for them to remain at a fixed distance relative to each other while orbiting around the Earth. However, such an experiment is severely limited by non-gravitational effects. If the test cylinders are weakly coupled in 2D in the plane perpendicular to their symmetry axis (close to the orbit plane), while rapidly spinning around it, a position of relative equilibrium is provided by physical laws which makes tidal effects widely separated from the signal. Weak coupling in ID along the symmetry axis (to lie and slowly rotate in the orbit plane) is viable but less advantageous. (C) 2003 Published by Elsevier B.V. [References: 14]
机译:在低地球轨道上测试等效原理(EP)的实验要求检测不同组成的测试质量之间极小的非经典差分加速度的影响。在所有提出的实验中,测试质量都是同心的同轴圆柱体,以减少经典的潮汐效应,这些效应也是微分的。完美居中是不可能的,潮汐效应需要认真研究,因为它们对实验设计的基本特征施加了严格的限制。本分析表明,对于自由飞行(解耦)的测试质量,如果对质量的初始条件进行微调以使它们在绕地球轨道运行时彼此之间保持固定距离,则可以检测到EP违规信号。但是,这种实验受到非重力作用的严重限制。如果测试圆柱体在垂直于其对称轴的平面(靠近轨道平面)中以二维二维弱耦合,同时在其周围快速旋转,则物理定律会提供相对平衡的位置,这会使潮汐效应与信号相差很大。沿着对称轴的ID弱耦合(在轨道平面上平躺并缓慢旋转)是可行的,但优势不大。 (C)2003年由Elsevier B.V.出版[参考文献:14]

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