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The Microscope Mission and Its Uncertainty Analysis

机译:显微镜任务及其不确定性分析

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The accurate test of the Universality of Free Fall may demonstrate a violation of Einstein Equivalence Principle (EP) as most attempts of Grand Unification theories seem to conduct. The MICROSCOPE space mission aims at an accuracy of 10 15 with a small drag free satellite and a payload based on electrostatic inertial sensors. The two test-masses made of Platinum and Titanium alloys are forced to follow accurately the same orbit. The sets of surrounding electrodes carried by gold coated silica parts allows the generation of electrical fields and electrostatic pressures on the masses. Common forces and torques are exploited to control the satellite drag compensation system and its fine inertial or rotating pointing. Difference in the force along the Earth gravity monopole is accurately measured and interpreted for the test. After a short presentation of the mission and the instrument, most of the relevant parameters to the experiment performance are detailed as well as the associated technologies to reach the expected levels of accuracy. Present error budgets confirm the test expected accuracy of better than 10 15.
机译:自由落体的普遍性的准确测试可能证明违反了爱因斯坦等效原理(EP),因为大统一理论的大多数尝试似乎都在进行。 MICROSCOPE太空任务的目标是使用小型无阻力卫星和基于静电惯性传感器的有效载荷实现10 15的精度。由铂和钛合金制成的两个测试质量被迫精确地遵循相同的轨道。由镀金的二氧化硅部件承载的周围电极组允许在物体上产生电场和静电压力。利用共同的力和扭矩来控制卫星阻力补偿系统及其精细的惯性或旋转指向。精确测量并解释了沿地球重力单极子的力差,并进行了解释。在简短介绍任务和仪器之后,将详细介绍与实验性能相关的大多数参数以及达到预期精度水平的相关技术。当前的错误预算确认测试的预期精度优于10 15。

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