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Determination of errors in derived magnetic field directions in geosynchronous orbit: results from a statistical approach

机译:确定地球同步轨道中导出磁场方向的误差:统计方法的结果

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摘要

This study aims to statistically estimate the errors in local magnetic field directions that are derived from electron directional distributions measured by Los Alamos National Laboratory geosynchronous (LANL GEO) satellites. First, by comparing derived and measured magnetic field directions along the GEO orbit to those calculated from three selected empirical global magnetic field models (including a static Olson and Pfitzer 1977 quiet magnetic field model, a simple dynamic Tsyganenko 1989 model, and a sophisticated dynamic Tsyganenko 2001 storm model), it is shown that the errors in both derived and modeled directions are at least comparable. Second, using a newly developed proxy method as well as comparing results from empirical models, we are able to provide for the first time circumstantial evidence showing that derived magnetic field directions should statistically match the real magnetic directions better, with averaged errors similar to 5 degrees. In addition, our results suggest that the errors in derived magnetic field directions do not depend much on magnetospheric activity, in contrast to the empirical field models. Finally, as applications of the above conclusions, we show examples of electron pitch angle distributions observed by LANL GEO and also take the derived magnetic field directions as the real ones so as to test the performance of empirical field models along the GEO orbits, with results suggesting dependence on solar cycles as well as satellite locations. This study demonstrates the validity and value of the method that infers local magnetic field directions from particle spin-resolved distributions.
机译:这项研究的目的是从洛斯阿拉莫斯国家实验室地球同步(LANL GEO)卫星测量的电子方向分布中,统计估计局部磁场方向的误差。首先,通过将沿GEO轨道导出和测量的磁场方向与从三个选定的经验全局磁场模型(包括静态Olson和Pfitzer 1977静磁场模型,简单的动态Tsyganenko 1989模型和复杂的动态Tsyganenko)计算出的方向进行比较2001风暴模型),结果表明,在导出方向和建模方向上的误差至少是可比较的。其次,使用新开发的代理方法并比较经验模型的结果,我们能够首次提供间接证据,表明派生的磁场方向应在统计上更好地匹配实际的磁场方向,平均误差<类似于2比三个经验模型的平均误差均大于5度。另外,我们的结果表明,与经验场模型相比,导出的磁场方向的误差与磁层活动的关系不大。最后,作为上述结论的应用,我们举例说明了LANL GEO观测到的电子俯仰角分布的示例,并以导出的磁场方向为真实方向,以测试沿GEO轨道的经验场模型的性能,结果表明对太阳周期以及卫星位置的依赖。这项研究证明了从粒子自旋分辨分布中推断局部磁场方向的方法的有效性和价值。

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