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A Method to Estimate the Physical Properties of Magnetospheric Generators From Observations of Quiet Discrete Auroral Arcs

机译:一种估计磁体发电机物理性质的方法免于安静离散极光弧观察

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摘要

We discuss a method to estimate the properties of a magnetospheric generator using a quasi‐electrostatic magnetosphere‐ionosphere coupling model and in situ or remote sensing observations of discrete quiet arcs. We first construct an ensemble of Vlasov equilibrium solutions for generator structures formed at magnetospheric plasma interfaces. For each generator solution, we compute the ionospheric electric potential from the current continuity equation. Thus, we estimate the field‐aligned potential drop that allows us to assess several properties of the discrete auroral arc, such as the field‐aligned potential difference, the field‐aligned current density, the flux of precipitating energy, and the height‐integrated Pedersen conductance. A minimization procedure based on comparing the numerical results with observations is defined and applied to find which solution of the current continuity equation and which generator model give auroral arc properties that best fit the observations. The procedure is validated in a case study with observations by DMSP and Cluster and can be generalized to other types of data.
机译:我们讨论使用准静电磁层 - 电离层耦合模型和离散安静弧的原位或遥感观察来估计磁体发生器的性能的方法。我们首先构建用于在磁体等离子体界面形成的发电机结构的Vlasov平衡解的集合。对于每个发电机解决方案,我们从电流连续性方程计算电离层电位。因此,我们估计允许我们评估离散极光弧的若干特性的现场对准电位下降,例如场对准电位差,场对准电流密度,沉淀能量的通量,以及高度集成的Pedersen电导。基于比较了与观测结果的比较的最小化过程,并应用了当前连续性方程的哪个解决方案以及哪些发电机模型提供最适合观察的极光电弧属性。该过程在案例研究中验证了DMSP和群集的观察,并且可以推广到其他类型的数据。

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