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Novel improvements to magnetospheric tomography using MHD

机译:小说改善磁性层的断层利用磁流体动力

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摘要

Over the past decade, radio tomographic techniques have seen increasing use within space science, both in practice, with ionospheric reconstruction, and theoretically as a tool for remote sensing magnetospheric plasmas. The promise of this technique for use in the magnetosphere was greatly enhanced with the introduction of combined Faraday rotation and phase or group delay radio tomography. As measurables these techniques provide distributions in space and time of electron density n e and magnetic field . Given these measured quantities, this paper provides a theoretical framework for further derivation of additional parameters, such as plasma temperature, based upon MHD relations. Additionally, we show how using the physical constraint · = 0 to regularize the reconstructions of magnetic field yields superior reconstructions with fewer measurements and provides a physical and effective method for incorporating in situ magnetometer measurements. Specifically, we find that including this regularization often reduces RMS errors in magnetic field reconstructions by a factor of 3. This simple regularization, especially when combined with in situ magnetometer measurements, is so powerful that it may influence future designs of a magnetospheric tomography mission.
机译:在过去的十年中,无线电层析技术看到越来越多地使用在空间科学,在实践中,电离层重建和理论上的工具遥感磁性层的等离子体。使用这种技术的承诺磁气圈是极大地增强了的结合法拉第旋转和介绍阶段或群延迟无线电层析成象。这些技术提供可衡量的分布在时间和空间上的电子密度n e和磁场。测量量,本文提供了一个进一步推导的理论框架其他参数,如等离子体温度,基于磁流体动力的关系。此外,我们将展示如何使用物理约束·= 0来调整重建的磁场收益率优越用更少的测量和重建提供了一个物理和有效的方法结合原位磁强计测量。具体来说,我们发现,包括这一点正则化通常降低了RMS中的错误磁场重建的3倍。这个简单的正则化,尤其是当结合原位磁强计测量,是如此强大,它可能会影响未来设计的磁性层的断层扫描任务。

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