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Importance of plasma injection events for energization of relativistic electrons in the Jovian magnetosphere

机译:等离子体注入事件对木星磁层中相对论电子激发的重要性

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摘要

Effects of density decrease in plasma injection regions and a latitude-dependent wave normal angle distribution on the energization of electrons by whistler mode waves at Jupiter are investigated. Previous work showed that whistler mode waves could enhance the fluxes of a few MeV electrons by an order of magnitude on a time scale of 30 days. However, density decrease in plasma injection regions and latitude dependence of the wave normal angle distribution of waves were not considered. Because this information is difficult to obtain from available observations, we perform a sensitivity study to demonstrate that the effect of density decrease on energization of electrons becomes important when the density inside injection regions is reduced to 25% of that outside. We also investigate the effect of a latitude-dependent wave normal angle distribution on energization of electrons using a ray tracing program and demonstrate that a realistic latitude-dependent wave normal angle distribution increases the rate of pitch angle diffusion near the loss cone, and thus enhances the loss rate, of 1–3 MeV electrons. However, the flux of 10 MeV electrons is not significantly affected. Results of the work are useful for understanding energization of MeV electrons at Jupiter, especially when combined with observations from future missions.
机译:研究了等离子体注入区域中密度的降低以及纬度相关波的正态分布对木星上惠斯勒模式波激发电子的影响。先前的工作表明,在30天的时间范围内,吹口哨模式波可以将几个MeV电子的通量提高一个数量级。但是,未考虑等离子体注入区域中的密度降低和波的波法向角分布的纬度依赖性。由于很难从现有观测资料中获得此信息,因此我们进行了敏感性研究,以证明当注入区域内的密度降低到外部注入密度的25%时,密度降低对电子通电的影响就变得很重要。我们还使用射线跟踪程序研究了纬度相关的波法向角分布对电子通电的影响,并证明了现实的纬度相关的波法向角分布会增加损耗锥附近的俯仰角扩散速率,从而增强1-3 MeV电子的损耗率。但是,10 MeV电子的通量不会受到明显影响。这项工作的结果对于理解木星MeV电子的能量很有用,特别是与未来任务的观测结果结合使用时。

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