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On the use of Ajisai and Jason-1 satellites for tests of general relativity

机译:关于使用Ajisai和Jason-1卫星进行广义相对论的测试

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摘要

In this paper we analyze in detail some aspects of the proposed use of Ajisai and Jason-1, together with the LAGEOS satellites, to measure the general relativistic Lense-Thirring effect in the gravitational field of the Earth. A linear combination of the nodes of such satellites is the proposed observable. The systematic error due to the mismodelling in the uncancelled even zonal harmonics would be similar to 1% according to the latest present-day CHAMP/GRACE-based Earth gravity models. In regard to the non-gravitational perturbations especially affecting Jason-1, only relatively high-frequency harmonic perturbations should occur: neither semisecular nor secular bias of non-gravitational origin should affect the proposed combination: their maximum impact is evaluated to similar to 4%, over 2 years. Our estimation of the root-sum-square total error is about 4-5% over at least 3 years of data analysis required to average out the uncancelled tidal perturbations. (c) 2006 Elsevier B.V. All rights reserved.
机译:在本文中,我们详细分析了拟议使用Ajisai和Jason-1以及LAGEOS卫星来测量地球引力场中广义相对论Lense-Thirring效应的某些方面。提出的这种卫星的节点的线性组合是可观察到的。根据最新的基于CHAMP / GRACE的最新地球重力模型,由于未取消的偶数谐波谐波中的建模错误造成的系统误差将接近1%。关于特别影响Jason-1的非重力扰动,仅应发生相对高频的谐波扰动:非重力起源的半长期或长期偏差都不应影响拟议的组合:它们的最大影响评估为接近4% ,超过2年。在至少3年的数据分析中,我们对均方根总误差的估计约为4-5%,以平均未消除的潮汐扰动。 (c)2006 Elsevier B.V.保留所有权利。

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