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Satellite Test of the Equivalence Principle Uncertainty Analysis

机译:等值原理不确定性卫星测试

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STEP, the Satellite Test of the Equivalence Principle, is intended to test the apparent equivalence of gravitational and inertial mass to 1 part in 1018 (Worden et al. in Adv. Space Res. 25(6):1205–1208, 2000). This will be an increase of more than five orders of magnitude over ground-based experiments and lunar laser ranging observations (Su et al. in Phys. Rev. D 50:3614–3636, 1994; Williams et al. in Phys. Rev. D 53:6730–6739, 1996; Schlamminger et al. in Phys. Rev. Lett. 100:041101, 2008). It is essential to have a comprehensive and consistent model of the possible error sources in an experiment of this nature to be able to understand and set requirements, and to evaluate design trade-offs. In the following pages we describe existing software for such an error model and the application of this software to the STEP experiment. In particular we address several issues, including charge and patch effect forces, where our understanding has improved since the launch of GP-B owing to the availability of GP-B data and preliminary analysis results (Everitt et al. in Space Sci. Rev., 2009, this issue; Silbergleit et al. in Space Sci. Rev., 2009, this issue; Keiser et al. in Space Sci. Rev., 2009, this issue; Heifetz et al. in Space Sci. Rev., 2009, this issue; Muhlfelder et al. in Space Sci. Rev., 2009, this issue).
机译:STEP,等效原理的卫星测试,旨在测试重力和惯性质量在1018年达到1的表观等效性(Worden等人,Adv。Space Res。25(6):1205-1208,2000)。与地面实验和月球激光测距观测相比,这将增加五个数量级以上(Su等人,Phys。Rev. D 50:3614-3636,1994; Williams等人,Phys。Rev. D 53:6730-6739,1996; Schlamminger等人,Phys。Rev. Lett。100:041101,2008)。在这种性质的实验中,必须有一个全面且一致的可能错误源模型,以便能够理解和设置需求,并评估设计的取舍。在接下来的几页中,我们将介绍用于这种错误模型的现有软件以及该软件在STEP实验中的应用。特别是,我们解决了几个问题,包括电荷和补丁效应力,由于GP-B数据的可获得性和初步分析结果,自GP-B发射以来我们的理解得到了改善(Everitt等人在Space Sci。Rev. ,2009年,本期; Silbergleit等人在《太空科学》,2009年,本期; Keizer等人在《太空科学》,2009年,本期; Heifetz等,《太空科学》,2009年,此问题; Muhlfelder等人在《太空科学》修订版,2009年,此问题)。

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