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Towards a One Percent Measurement of Frame Dragging by Spin with Satellite Laser Ranging to LAGEOS,LAGEOS 2 and LARES and GRACE Gravity Models

机译:利用卫星激光测距旋转到LAGEOS,LAGEOS 2和LARES和GRACE引力模型的帧拖动的百分之一测量

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During the past century Einstein’s theory of General Relativity gave rise to an experimental triumph; however, there are still aspects of this theory to be measured or more accurately tested. Today one of the main challenges in experimental gravitation, together with the direct detection of gravitational waves, is the accurate measurement of the gravito-magnetic field generated by the angular momentum of a body. Here, after a brief introduction on frame-dragging, gravitomagnetism and Lunar Laser Ranging tests, we describe the past measurements of frame-dragging by the Earth spin using the satellites LAGEOS, LAGEOS 2 and the Earth’s gravity models obtained by the GRACE project.We demonstrate that these measurements have an accuracy of approximately 10%. We then describe the LARES experiment to be launched in 2010 by the Italian Space Agency for a measurement of frame-dragging with an accuracy of a few percent.We finally demonstrate that a number of claims by a single individual, that the error budget of the frame-dragging measurements with LAGEOS-LAGEOS 2 and LARES has been underestimated, are indeed ill-founded.
机译:在上个世纪中,爱因斯坦的广义相对论引起了实验的胜利。但是,该理论的某些方面仍待测量或更准确地进行测试。今天,实验引力以及直接检测引力波的主要挑战之一是精确测量由物体的角动量产生的引力磁场。在这里,在简要介绍了框架拖曳,重力磁场和月球激光测距测试之后,我们使用GRACE项目获得的LAGEOS,LAGEOS 2卫星和地球重力模型描述了地球自旋对框架拖曳的过去测量。证明这些测量的准确度约为10%。然后,我们描述了由意大利航天局于2010年启动的LARES实验,该实验用于测量帧拖曳的精度为百分之几。最后,我们证明了一个人提出的许多索赔要求,以及使用LAGEOS-LAGEOS 2和LARES进行帧拖曳测量的结果被低估了,这确实是没有根据的。

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