首页> 外文会议>IEEE International Workshop on Metrology for Aerospace >Fundamental physics in the field of the Earth with the laser ranged satellites experiment (LARASE)
【24h】

Fundamental physics in the field of the Earth with the laser ranged satellites experiment (LARASE)

机译:激光测距卫星实验在地球领域的基本物理学(LARASE)

获取原文

摘要

LARASE represents a new experiment whose main goal is to provide accurate measurements for the gravitational interaction in the weak field and slow motion limit by means of the laser tracking of satellites orbiting around the Earth. Among the various ingredients needed, two of them play a very significant role: i) the quality of the tracking observations of the satellites orbit, and ii) the quality of the dynamical models implemented in a software code whose goal is to minimize, opportunely, an observable function and solve for the unknowns in which we are interested. Indeed, these models have to account for both gravitational and non-gravitational forces in such a way to reduce as better as possible the difference between the observed range and the computed (from the models) one. Of course, the better the minimization process through the orbit data reduction from one side and the better the estimate of the systematic error sources from the other, more precise and accurate will be the a posteriori reconstruction of the satellite orbit. Therefore, LARASE aims to improve the dynamical models of the current best laser-ranged satellites, as well as to improve the error budget estimates of the several perturbations that influence their trajectory around the Earth. This will allow to test in a reliable way Einstein's theory of general relativity with respect to other metric and non-metric theories for the gravitational interaction and to go beyond with respect to the present measurements as well as to the kind of tests carried out so far.
机译:LARASE代表了一项新实验,其主要目标是通过对绕地球轨道运行的卫星进行激光跟踪,为弱磁场和慢速运动极限中的重力相互作用提供准确的测量结果。在所需的各种要素中,其中两个发挥了非常重要的作用:i)卫星轨道的跟踪观测的质量,以及ii)在软件代码中实现的动力学模型的质量,其目的是最大程度地减少一个可观察的函数,并解决我们感兴趣的未知数。实际上,这些模型必须同时考虑重力和非重力,以尽可能地减小观测范围与计算出的(从模型中得出的)范围之间的差异。当然,从一侧减少轨道数据的最小化过程越好,从另一侧减少系统误差源的估计就越好,卫星轨道的后验重建将更加精确和准确。因此,LARASE旨在改善当前最佳激光测距卫星的动力学模型,并改善影响其绕地球轨道的几种扰动的误差预算估计。这将允许以可靠的方式测试爱因斯坦的广义相对论相对于重力相互作用的其他度量和非度量理论,并且超越当前的测量以及迄今为止进行的测试种类。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号