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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Probing the post-newtonian physics of semi-conservative metric theories through secular tidal effects in satellite gradiometry missions
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Probing the post-newtonian physics of semi-conservative metric theories through secular tidal effects in satellite gradiometry missions

机译:通过卫星梯度测量任务中的长期潮汐效应来探索半保守度量理论的牛顿后物理学

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摘要

The existence of relativistic secular tidal effects along orbit motions will largely improve the measurement accuracies of relativistic gravitational gradients with orbiting gradiometers. With the continuous advances in technologies related to gradiometry and the improvements in their resolutions, it is feasible for future satellite gradiometry missions to carry out precision relativistic experiments and impose constraints on modern theories of gravity. In this work, we study the theoretical principles of measuring directly the secular post-Newtonian (PN) tidal effects in semi-conservative metric theories with satellite gradiometry missions. The isolations of the related PN parameters in the read-outs of an orbiting three-axis gradiometer is discussed.
机译:沿轨道运动的相对论性长期潮汐效应的存在将大大提高轨道梯度仪的相对论引力梯度的测量精度。随着与梯度技术有关的技术的不断进步和其分辨率的提高,未来的卫星梯度技术任务进行精确的相对论实验并对现代引力理论施加约束是可行的。在这项工作中,我们研究了通过卫星梯度法任务直接测量半保守度量理论中长期后牛顿(PN)潮汐效应的理论原理。讨论了轨道三轴梯度仪读数中相关PN参数的隔离。

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